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Engineering Management Dissertation Topics

Published by Carmen Troy at January 9th, 2023 , Revised On August 18, 2023

Introduction 

Dissertation writing is an extremely important academic task that all students must complete as part of their degree programmes. However, choosing a dissertation topic can be an extremely daunting challenge for most students because they could be unsure about the area of research they should pursue.

The dissertation starts with an idea upon which research is performed. The idea is then transformed into an academic concept by presenting arguments and evidence. It should be noted that a well-written dissertation addresses the research topic  at all levels and is written concisely.

The  research methodology chapter  of a  dissertation  presents complete evidence of the research work performed in the form of data collection/analysis methods employed by the researcher. However, many students do not know where to start.

To help you get started with brainstorming for engineering management topic ideas, we have developed a list of the latest topics that can be used for writing your engineering management dissertation.

These topics have been developed by PhD qualified  writers of our team , so you can trust to use these topics for drafting your dissertation.

You may also want to start your dissertation by requesting  a brief research proposal  from our writers on any of these topics, which includes an  introduction  to the problem,  research questions , aim and objectives ,  literature review  along with the proposed  methodology  of research to be conducted.  Let us know  if you need any help in getting started.

Check our  example dissertations  to get an idea of  how to structure your dissertation .

You can review step by step guide on how to write your dissertation  here.

View our free dissertation topics database.

2022 Engineering Management Dissertation Topics

Topic 1: what are the environmental impacts of water waste treatment of cement industry in south korea.

Research Aim: This study aims to find the environmental impacts of water waste treatment of the cement industry in South Korea. With the help of a comprehensive survey across the cement manufacturing companies in South Korea, this study will first scrutinize the entire waste treatment process in the cement industry in South Korea. Then it will analyze the impact of each step on the environment. And after analyzing find the environmental effects of the water waste treatment of the cement industry in South Korea, this study will recommend modern ways to reduce the adverse effects.

Topic 2: An investigation of the challenges faced by the business in leading themselves towards environmental sustainability due to global value chains and how the businesses mitigate such challenges - A case of Nigerian SME.

Research Aim: The significant aim of this research study is to uncover the issues and challenges faced by multiple businesses while implementing environmental sustainability and growth as a result of the global value chain. Another objective of this research topic is to investigate the sustainable strategies through which businesses mitigate the identified challenges of the global value chain by targeting Nigerian small and medium companies as a case study.

Topic 3: What are the modern water treatment techniques to minimize the environmental effects of water waste in the Cement Industry? A Cross-Country analysis

Research Aim: This study aims to identify the modern water treatment techniques to minimize the environmental effects of water waste in the Cement Industry. A cross-country study will analyze the different water treatment techniques used by the cement industries in different countries. The best way to conduct this analysis is through comparing developed and developing countries. And after identifying the best techniques, this study will recommend the optimal methods that can be used around the world in any country.

Topic 4: An innovative strategic evaluation of university knowledge and technology transfer efficacy for students up to date on new engineering tools.

Research Aim: This study aims to analyse the framework that organises total project work based on high levels of creativity in project development, as well as to keep students up to date with the usage of technology; focusing on collecting data from different firms that have utilized the technology to manufacture items and run highly creative initiative in collaboration with the university.

Topic 5: Investigating the strategies used to reduce water pollution caused by the maritime transportation system.

Research Aim: The main goal of this study is to investigate the strategies for reducing water pollution produced by the marine transportation sector/industry.  This study will also analyse the environmental risks posed by water contamination and how marine transportation contributes to the increase in water pollution. Focusing on the economic cost of restoring the damage as a result of marine pollution will also help us learn about the environmental effects of water pollution and understand how to reduce water pollution by different methods and technologies used by management.

Covid-19 Engineering Management Research Topics

Topic 1: impact of covid-19 on engineering institutes.

Research Aim: This study will focus on identifying the impacts of coronavirus on engineering institutes and discuss possible solutions to overcome the challenges.

Topic 2: Role of engineering management during Covid-19

Research Aim: The study will focus on identifying the contribution of engineering management to combat the coronavirus pandemic. It will discuss emergency management to prevent and diagnose COVID-19, including its advantages and disadvantages.

Engineering Management Dissertation Topics for 2020

Topic 1: developing an integrated water management model to reduce water wastage: a case study of developing countries.

Research Aim: This research will focus on the ecological and environmental influences that can be caused by water wastage while developing an effective model that can be utilised for effective water management to reduce the wastage of water. This research will focus on real-life scenarios of water management occurring in developing nations while recommending major changes in their existing water management system.

Find 100s of dissertation topics for other research areas.

Topic 2: Critical analysis of alternative energy in the least developed countries: The emergence of solar power as a means of providing electricity

Research Aim: The major purpose of this study will lie in transforming conventional means of energy to solar energy and its importance in the least developed countries. The researcher will carry out a detailed critical analysis of what pros and cons can emerge due to the utilisation of alternative energy solutions and how least developed countries can use solar energy systems instead of traditional energy systems keeping in mind the cost and other benefits.

Topic 3: Assessing the impact of biogas emission on quality of life and health of individuals living in rural areas: A case study of developing countries.

Research Aim: In this study, the main aim of the researcher will be to analyse major health and other effects that can be caused due to the emission of biogas. The researcher will demonstrate the major risks to the quality of life of individuals living in rural areas of developing nations and what measures can be taken which reduce the effects of biogas emission on the quality and health of the individuals.

Topic 4: Challenges facing the concept of sustainable and green engineering

Research Aim: This research study will aim to identify challenges facing the concept of sustainable and green engineering. The environment of the world is deteriorating at an alarming pace, primarily because of industrial activities that result in carbon emissions. This project will enable readers to understand the advantages of green engineering over conventional engineering and identify why this concept has not been implemented on a wider scale.

How Can ResearchProspect Help?

ResearchProspect writers can send several custom topic ideas to your email address. Once you have chosen a topic that suits your needs and interests, you can order for our dissertation outline service which will include a brief introduction to the topic, research questions , literature review , methodology , expected results , and conclusion . The dissertation outline will enable you to review the quality of our work before placing the order for our full dissertation writing service!

More Engineering Management Dissertation Topics

Some other interesting  engineering management dissertation topics  are listed below:

  • Ensuring Smooth Process Improvement by Conducting Management of Chain
  • The Development of a Project Management Methodology for Peace Corps Mauritania
  • Determination of the Critical Activities of a Public-private Intermediary Organization with the Help of Value Chain Analysis
  • Customer Relationship Management
  • Investigating the Management of Uncertainty in Product Platform Lifecycles
  • Study of the Performance and Characteristics of U.S. Academic Research Institution Technology Commercialization (ARITC)
  • Examining Health Information Technology Implementations: Case of the Patient-Centered Medical Home
  • Strategic Evaluation of University Knowledge and Technology Transfer Effectiveness
  • Proposing a Strategic Policy Model for International Collaboration in Technology and Science to Bridge the Gap between “Bottom-up” and Top-Down.
  • Use of Multiple Hierarchical and Perspectives Decision Modelling to Assess Solar Photovoltaic Technologies
  • Innovation Intermediaries and the Impact of Social Capital
  • Innovation Measurement: Determining Creativeness of an Organisation through Decision Framework
  • Performance of National Laboratories and the Impact of Knowledge Inflows
  • Proposing a Strategic Policy Choice Framework for Technological Innovation: Case of Chinese Pharmaceuticals
  • Use of Cognitive Map based Scenarios to Extend Technology Roadmap: The Case of Wind Energy Sector in India
  • Integrating Financial Performance, Green Innovativeness and Environmental Performance
  • Exploring Capability Maturity Models and Relevant Practices as Solutions Addressing IT Service Offshoring Project Issues
  • Decision Modelling for the Information and Communications Technology Sector and Participation in Technology Standards Development
  • Energy Policies to Employ Renewable Energy Resources; Case of Wind Energy in the UK
  • Technological Forecasting Based on Segmented Rate of Change
  • Sustainability Managing a Project Team
  • Risks Associated with Management of Engineering Projects
  • Supporting Business Strategies through Identification of Process Improvement Plans
  • Motivating Staff through Efficient Supply Chain Management
  • Improving Efficiency of an Organisation with Leadership

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Important Notes:

As an engineering management student looking to get good grades, it is essential to develop new ideas and experiment on existing engineering management theories – i.e., to add value and interest in your research topic.

The field of engineering management is vast and interrelated to so many other academic disciplines like civil engineering ,  construction ,  law ,  healthcare , mental health , artificial intelligence , tourism , physiotherapy , sociology , management , marketing and nursing . That is why it is imperative to create a project management dissertation topic that is articular, sound, and actually solves a practical problem that may be rampant in the field.

We can’t stress how important it is to develop a logical research topic; it is the basis of your entire research. There are several significant downfalls to getting your topic wrong; your supervisor may not be interested in working on it, the topic has no academic creditability, the research may not make logical sense, there is a possibility that the study is not viable.

This impacts your time and efforts in  writing your dissertation  as you may end up in the cycle of rejection at the very initial stage of the dissertation. That is why we recommend reviewing existing research to develop a topic, taking advice from your supervisor, and even asking for help in this particular stage of your dissertation.

While developing a research topic, keeping our advice in mind will allow you to pick one of the best engineering management dissertation topics that fulfil your requirement of writing a research paper and add to the body of knowledge.

Therefore, it is recommended that when finalizing your dissertation topic, you read recently published literature to identify gaps in the research that you may help fill.

Remember- dissertation topics need to be unique, solve an identified problem, be logical, and be practically implemented. Take a look at some of our sample engineering management dissertation topics to get an idea for your own dissertation.

How to Structure your Engineering Management Dissertation

A well-structured   dissertation can help students   to achieve a high overall academic grade.

  • A Title Page
  • Acknowledgements
  • Declaration
  • Abstract: A summary of the research completed
  • Table of Contents
  • Introduction : This chapter includes the project rationale, research background, key research aims and objectives, and the research problems to be addressed. An outline of the structure of a dissertation  can also be added to this chapter.
  • Literature Review :  This chapter presents relevant theories and frameworks by analysing published and unpublished literature available on the chosen research topic, in light of  research questions  to be addressed. The purpose is to highlight and discuss the relative weaknesses and strengths of the selected research area whilst identifying any research gaps. Break down of the topic, and key terms can have a positive impact on your dissertation and your tutor.
  • Methodology:  The  data collection  and  analysis  methods and techniques employed by the researcher are presented in the Methodology chapter which usually includes  research design,  research philosophy, research limitations, code of conduct, ethical consideration, data collection methods and  data analysis strategy .
  • Findings and Analysis:  Findings of the research are analysed in detail under the Findings and Analysis chapter. All key findings/results are outlined in this chapter without interpreting the data or drawing any conclusions. It can be useful to include  graphs , charts and   tables in this chapter to identify meaningful trends and relationships.
  • Discussion  and  Conclusion: The researcher presents his interpretation of results in this chapter, and state whether the research hypothesis has been verified or not. An essential aspect of this section of the paper is to draw a linkage between the results and evidence from the literature. Recommendations with regards to implications of the findings and directions for the future may also be provided. Finally, a summary of the overall research, along with final judgments, opinions, and comments, must be included in the form of suggestions for improvement.
  • References:  This should be completed in accordance with your University’s requirements
  • Bibliography
  • Appendices:  Any additional information, diagrams, graphs that were used to  complete the  dissertation  but not part of the dissertation should be included in the Appendices chapter. Essentially, the purpose is to expand the information/data.

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Engineering management simply refers to the management of all engineering aspects. It combines technology and organization to optimise engineering and overcome its limitations. Research in this field is crucial for improving engineering's potential. Thus, researchers and students must look for quality engineering management dissertation topics .

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How to find and shortlist workable dissertation topics for an engineering management dissertation.

Finding good topics for engineering dissertations can be difficult. This is because engineering management courses can be complicated. You might want to look at some examples of engineering management dissertations to get an idea. But the most important thing is to find a good topic before you start.

The important questions that students can ask at the start of this module are;

  • What are the thesis topics for engineering management that I work with?
  • Are there any engineering management thesis topics that my supervisor would be interested in?
  • Do I need any engineering management dissertation help at this stage?

Once you have shortlisted dissertation topics for engineering management, you can share them with your supervisor and they can help you choose the best one.

Importance of Selecting a Good Engineering Management Dissertation Topic

Engineering management combines business and technical skills to manage engineering projects. Graduates take up key managerial roles in the industry with high salaries and benefits. It is one of the top eight highest-paying master's degree programs due to the increased demand for qualified engineering managers. Regardless of the reason for entering this field of study, it is required in both master's and PhD programs to submit an engineering management research proposal to supervisors to be considered for admission.

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Engineering Dissertation Topics

A dissertation (or a final year project report) is a comprehensive technical report of the research work carried out. A dissertation must present some new, original concepts that lead to further research. The core area of a dissertation consists of a hypothesis (or a research question) upon which an investigation is conducted and, in most cases, inevitably leads to further research. A dissertation must be focused, concise and must address the research topics at every level. Also, along with research, a dissertation is expected to present complete evidence of research work in the form of research methods. Sometimes it’s hard to even know where to start. Herein, many engineering research areas, currently being sought after in the industry and academia, are suggested, including electronics, sensors technology, environmental engineering, supply chain engineering, computer science engineering, electrical engineering and civil engineering, to help you start your research.

  • Electronics and Communication Dissertation Topics

Sensors Technology Dissertation Topics

Environmental engineering dissertation topics, supply chain engineering dissertation topics, supply chain management dissertation topics, computer science engineering dissertation topics, electrical engineering dissertation topics, civil engineering dissertation topics, management related engineering dissertation topics, electronics and communications dissertation topics.

Over the past decade the rise of electronic communication has been revolutionised; it is the fastest growing technology. There are numerous areas of research in this field; however, the most demanding ones are highlighted below.

  • Defining the boundaries of electrical signals for current electronics (communication) systems.
  • The limitation of fibre optic communication systems and the possibility of further improving their efficiency.
  • Developing the embedded communication system for the national grid to optimise energy usage.
  • Improvement of inter-symbol interference in optical communications.
  • A study of the various forms of errors and the development of an equalisation technique to reduce the error rates in data.
  • Gaussian pulse analysis and the improvement of this pulse to reduce errors.
  • Realising the potential of RFID in the improvement of supply chain.
  • Radiation in integrated circuits and electronic devices.
  • Design of high speed communication circuits that effectively cut down signal noise.
  • Spectral sensing research for water monitoring applications and frontier science and technology for chemical, biological and radiological defence.
  • Nano-structured membranes for preparative purifications of biopharmaceuticals.

The rise of smart technology has been revolutionising sensor technologies, and there is a high demand to make more efficient and compact sensors. The following topics are a few areas that researchers are currently working in to realise further potentials.

  • Design and development of a pressure sensor for a solar thermal panel.
  • An investigation into wind speed and direction sensors to optimise the operations of wind turbines.
  • Utilising MEMS for profiling airflow around large building structures.
  • Development of micro sensors to measure oil flow rate in tanks.
  • Development and implementation of micro sensors to study pressure of the blood stream.
  • Development of sensors to measure heat generated from solar panels.
  • Sensing and controlling the intensity of light in LEDs.
  • Research and computational simulation of a natural olfactory biosensor.
  • Development of glucose biosensors using nanotechnology.

We are living in the age of technology where the driving force is to reduce the environmental impact of engineering products. Many countries have been undertaking projects supporting the environment and aiming to reduce carbon emissions. The following engineering dissertation topics are of utmost interest for researchers in the industry.

  • Analysing the impact of aviation industry on the environment and the potential ways to reduce it.
  • The environmental cost of the so called green energy, ‘wind energy’.
  • An analysis of factors that hinder the realising of cutting-edge technology for reducing carbon emissions from automobiles.
  • Design and development of a system for measuring the carbon index of an energy intensive company.
  • Process improvement techniques to identify and remove waste in the automotive industry.
  • Process mapping techniques to identify bottle necks for supply chain industry.
  • A study of compressor operations on a forging site and mapping operations to identify and remove energy waste.
  • Improving processes to reduce kWh usage and reduce inefficiencies.
  • Developing a compact device to measure energy use for a household.
  • In the forging industry how can changing burners within furnaces help organisations achieve energy efficiency?
  • How can gas consumption be reduced and efficiency introduced to reduce kWh usage?
  • How can voltage reduction devices help organisations achieve efficiency in electricity usage?
  • What are carbon credits and how can organisations generate them?
  • There are some organisations that use water excessively, with bills totalling more than £25,000. Identify the main reasons for such water usage and investigate better ways to introduce water efficiency and create savings.
  • Identify the ways by which efficient control systems using information systems can be introduced to study the energy usage in a machining factory.
  • A project to set up ways to measure natural gas flow ultrasonically and identify waste areas.
  • How can water conductivity probes help determine water quality and how can water be reused?

Supply chain plays an important role in the manufacturing business sector. It is important that the supply chain is well supported by efficient methods and processes. Your engineering dissertation topics could be about:

  • Highlighting the difference between the supply chain engineering and management for a company to improve output.
  • Analysing the key factors in process planning and optimisation of supply chain for a manufacturing company.
  • Developing a supply chain template for a small but thriving online business.
  • How can organisations achieve success by reducing bottlenecks in supply chain?
  • Just-in-time – is it really valid? Measurement of losses within just-in-time process implementation.
  • How can process efficiency be introduced to reduce waste within the manufacturing process?
  • Supplier relationship is an important factor for the success of just-in-time. How can organisations ensure successful transactions?
  • Research to identify efficient logistics operations within a supply chain.
  • Research to introduce efficiency within information systems and support timely transfer of knowledge and information.
  • The effect of globalisation on supply chain engineering/management for large multi-national companies.
  • Research studying the impact of culture on supply chain industries: identification of factors that generate inefficiencies with the supply chain.

Supply chain management involves the administration, management, control and supervision of the movement of goods and services from supplier to manufacturer to wholesaler to retailer and to the end consumer. Supply chain management involves coordinating and integrating these elements using an effective and efficient approach and methodology. Supply chain management is important for businesses to ensure there is minimum waste, drive innovation thereby creating integrated value chains. Supply chain management plays an important and central role in the success of a business. Please find a list of topics on supply chain management that may be useful for your engineering dissertation:

  • A detailed investigation into the need and use of dynamic staff to determine and rectify supply chain problems with a specific focus on the construction industry.
  • Research into eco-friendly and sustainable practices in supply chain management.
  • Research to develop a learning organisation and its impact on supply chain management.
  • Research to measure and develop intellectual capital within the supply chain industry.
  • A detailed study of innovative forecasting and demand planning strategies for supply chain management
  • Research study to create measurements to study the impact of learning organisation on performance measurement in supply chain industry
  • Impact of training on knowledge performance index within supply chain industry.
  • The behaviour of Carbon index with the implementation of a learning organisation.
  • Developing a framework for supply chain management in densely populated urban cities
  • Detailed investigation and analysis taking into account supply chain and logistical strategies for perishable goods.
  • The influence and impact of emerging e-commerce technologies on supply chain management.

Computer science engineering focuses on the key elements of computer programming and networking with a focus on gaining knowledge of the design, implementation and management of information systems. Information systems play a major role in computer science engineering and an integral component to the successful operations of organisations. The management of information technology systems is a major element for organisations. The following could be used for an engineering dissertation as well as a computing dissertation:

  • How can organisations ensure that information system is effectively used to maintain process efficiency?
  • How can learning organisations influence the development of information systems?
  • The role of risk management in information technology systems of organisations.
  • Research to identify and reduce e-waste using information technology strategies and systems.
  • Current status and research on E-waste in the United Kingdom
  • Development of measurement systems to measure e-waste.
  • A detailed review of the role of information technology in improving productivity and transforming organisations.
  • An investigation into the use of information technology as a tool for sustained competitive advantage.
  • A high-level investigation and detailed review into best practices for the implementation of information technology in modern day organisations.

Electrical engineering is focused on the design, development, testing, supervision and the manufacturing of electrical equipment. Electrical engineers design the electrical systems of automobiles, aircrafts, power generation equipment, communications systems, radar and navigational systems. The design and development of these electrical components are key and central to modern day life. There are several topics within this area that you could research for your electrical engineering dissertation:

  • Development of a system to study the efficiency of motors in order to reduce kWh usage
  • Setting up of a control system to monitor the process usage of compressors.
  • Develop a scheme to normalise compressor output to kWh.
  • Research to investigate, develop and introduce schemes to ensure efficient energy consumption by electrical machines.
  • Research to study transformer losses and reduce energy loss.
  • Research to study metering techniques to control and improve efficiency.
  • Research to introduce smart metering concepts to ensure efficient use of electricity.
  • Integration of smart metering pulsed outputs with wireless area networks and access real-time data.
  • Developing effective strategies and methodical systems for pay as you go charging for electric vehicles
  • A detailed review and investigation into the key issues and challenges facing rechargeable lithium batteries
  • Trends and challenges in electric vehicles technologies
  • Smart charging of electric vehicles on the motorway

The main emphasis of civil engineering in recent times is focused on sustainable development of quality, durable structures that deliver value for money, maximise the benefits from innovation and meets the specifications of the end users. Construction of sustainable houses has been a top priority within civil engineering. The following research topics are being actively undertaken and may be a good area for you to base your research on your own engineering dissertation:

  • Development of sustainable homes making use of renewable energy sources.
  • The use of sustainable materials for construction: design and delivery methods.
  • The role of environmental assessment tools in sustainable construction
  • The use of warm mix asphalt in road construction
  • Research to study properties of concrete to achieve sustainability.
  • Development of waste reduction strategy to achieve sustainable concepts
  • High-level review of the barriers and drivers for sustainable buildings in developing countries
  • Research to study the impact of sustainability concepts on organisational growth and development.
  • Sustainable technologies for the building construction industry
  • Building Information Modelling in the construction industry
  • Research regarding micromechanics of granular materials.
  • Research to study and develop water treatment processes.
  • Research to set up remote sensing applications to assist in the development of sustainable construction techniques.
  • High-level strategies, best practice guidelines and methodologies for sustainable construction.
  • State of the art practice for recycling in the construction industry.
  • Key factors and risk factors associated with the construction of high rise buildings.
  • An investigation into health and safety in the construction industry.

Engineering management is the application of the practice of management to the practice of engineering. Engineering management integrates problem-solving, engineering, technological developments and advancements in organizational structure, administrative, and planning abilities of management in order to oversee the operational performance of complex engineering driven enterprises. These two topics go hand in hand and support each other quite well. It is important that both sides are well balanced. The following research topics could be useful for your engineering dissertation:

  • Steps to conduct management of change to ensure smooth process improvement.
  • Research to sustainably manage a project team.
  • Research to study the management of engineering projects and various risks involved with them.
  • Research to identify process improvement plans to support business strategies.
  • Efficient supply chain management to ensure and develop key motivational skills within staff members.
  • How leadership can help efficiency within a learning organisation.
  • Developing an integrated approach to strategic management in organisations.
  • Creating and sustaining competitive advantage in engineering organisations.
  • Developing frameworks for sustainable assessments taking into account eco-engineering measures.
  • The role of engineers in managing development in emerging countries.

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MIT Sloan Predoctoral Opportunities

MIT Sloan is eager to provide a diverse group of talented students with early-career exposure to research techniques as well as support in considering research career paths.

A group of three women looking at a laptop in a classroom and a group of three students in the background

Rising Scholars Conference

The fourth annual Rising Scholars Conference on October 25 and 26 gathers diverse PhD students from across the country to present their research.

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The goal of the MIT Sloan PhD Program's admissions process is to select a small number of people who are most likely to successfully complete our rigorous and demanding program and then thrive in academic research careers. The admission selection process is highly competitive; we aim for a class size of nineteen students, admitted from a pool of hundreds of applicants.

What We Seek

  • Outstanding intellectual ability
  • Excellent academic records
  • Previous work in disciplines related to the intended area of concentration
  • Strong commitment to a career in research

MIT Sloan PhD Program Admissions Requirements Common Questions

Dates and Deadlines

Admissions for 2024 is closed. The next opportunity to apply will be for 2025 admission. The 2025 application will open in September 2024. 

More information on program requirements and application components

Students in good academic standing in our program receive a funding package that includes tuition, medical insurance, and a fellowship stipend and/or TA/RA salary. We also provide a new laptop computer and a conference travel/research budget.

Funding Information

Throughout the year, we organize events that give you a chance to learn more about the program and determine if a PhD in Management is right for you.

PhD Program Events

May phd program overview.

During this webinar, you will hear from the PhD Program team and have the chance to ask questions about the application and admissions process.

June PhD Program Overview

July phd program overview, august phd program overview.

Complete PhD Admissions Event Calendar

Unlike formulaic approaches to training scholars, the PhD Program at MIT Sloan allows students to choose their own adventure and develop a unique scholarly identity. This can be daunting, but students are given a wide range of support along the way - most notably having access to world class faculty and coursework both at MIT and in the broader academic community around Boston.

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Students Outside of E62

Profiles of our current students

MIT Sloan produces top-notch PhDs in management. Immersed in MIT Sloan's distinctive culture, upcoming graduates are poised to innovate in management research and education.

Academic Job Market

Doctoral candidates on the current academic market

Academic Placements

Graduates of the MIT Sloan PhD Program are researching and teaching at top schools around the world.

view recent placements 

MIT Sloan Experience

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The PhD Program is integral to the research of MIT Sloan's world-class faculty. With a reputation as risk-takers who are unafraid to embrace the unconventional, they are engaged in exciting disciplinary and interdisciplinary research that often includes PhD students as key team members.

Research centers across MIT Sloan and MIT provide a rich setting for collaboration and exploration. In addition to exposure to the faculty, PhD students also learn from one another in a creative, supportive research community.

Throughout MIT Sloan's history, our professors have devised theories and fields of study that have had a profound impact on management theory and practice.

From Douglas McGregor's Theory X/Theory Y distinction to Nobel-recognized breakthroughs in finance by Franco Modigliani and in option pricing by Robert Merton and Myron Scholes, MIT Sloan's faculty have been unmatched innovators.

This legacy of innovative thinking and dedication to research impacts every faculty member and filters down to the students who work beside them.

Faculty Links

  • Accounting Faculty
  • Economic Sociology Faculty
  • Finance Faculty
  • Information Technology Faculty
  • Institute for Work and Employment Research (IWER) Faculty
  • Marketing Faculty
  • Organization Studies Faculty
  • System Dynamics Faculty
  • Technological Innovation, Entrepreneurship, and Strategic Management (TIES) Faculty

Student Research

“MIT Sloan PhD training is a transformative experience. The heart of the process is the student’s transition from being a consumer of knowledge to being a producer of knowledge. This involves learning to ask precise, tractable questions and addressing them with creativity and rigor. Hard work is required, but the reward is the incomparable exhilaration one feels from having solved a puzzle that had bedeviled the sharpest minds in the world!” -Ezra Zuckerman Sivan Alvin J. Siteman (1948) Professor of Entrepreneurship

Sample Dissertation Abstracts - These sample Dissertation Abstracts provide examples of the work that our students have chosen to study while in the MIT Sloan PhD Program.

We believe that our doctoral program is the heart of MIT Sloan's research community and that it develops some of the best management researchers in the world. At our annual Doctoral Research Forum, we celebrate the great research that our doctoral students do, and the research community that supports that development process.

The videos of their presentations below showcase the work of our students and will give you insight into the topics they choose to research in the program.

How Should We Measure the Digital Economy?

2020 PhD Doctoral Research Forum Winner - Avinash Collis

Watch more MIT Sloan PhD Program  Doctoral Forum Videos

phd topics in engineering management

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phd topics in engineering management

GW University Bulletin. Provisonal Edition. 2023-2024.  Opens new window

Doctor of Philosophy in the Field of Engineering Management

The online master of science in engineering management is designed to provide students with an interdisciplinary understanding of leadership skills. Specifically, the skills needed to become effective managers in technology-driven organizations and government entities. Throughout the program, students acquire knowledge of technical engineering principles and engineering contracts within a management context.

Program graduates are equipped with the skills to effectively lead diverse engineering teams, oversee complex projects, implement innovative strategies, and drive organizational success. They also are prepared to take the Project Management Professional Examination (offered by the Project Management Institute) to receive the PMP certification.

The online program’s structure offers synchronous and asynchronous learning options, giving students the flexibility to study at their convenience and from any location.

This is a STEM designated program.

Visit the  program website  for additional information.

* A limited number of doctoral applicants are accepted for the summer. Please contact the admissions office for details.  International applicants who require a visa from GW are eligible to apply for admission in fall and spring only (not summer).

For additional information about the admissions process visit the SEAS Admissions Frequently Asked Questions  page.

Contact for questions:

[email protected]

202-994-1802 (phone) 202-994-1651 (fax)

Hours: 9:00 am to 5:00 pm, Monday through Friday

Credit Requirements 

Students entering the program with a relevant master’s degree spend a minimum of three years in full-time residency for PhD studies. During that time they take a minimum of 36 credits in coursework, including at least 18 credits in dissertation research. Students entering the program without a relevant master’s degree are required to take up 24 credits in additional of coursework. Students entering with only a bachelor’s degree are required to take 24 credits in additional coursework. 

Additional requirements

  • To advance to the research phase, students must achieve a minimum GPA of 3.4 with no grade below  B-  at the completion of their coursework.  
  • Coursework must be finished within three years (five years for direct admit PhD students) of the start of the PhD program.
  • Within three years of the start of the program (five years for direct admits), Students must attempt the doctoral qualifying examination and will be given a maximum of two attempts to pass the exam.
  • Within five years of the start of the program (seven years for direct admits), students must complete their research proposal and successfully defend it to a committee of three members, at least two of which which must be from the EMSE Department. Students have a maximum of two attempts to successfully pass their research proposal defense.
  • Within seven years of the start of their PhD program (nine years for direct admits), students must complete their research dissertation and successfully defend it to a committee of five members, at least three of which must be from the EMSE Department and one must be from outside the EMSE Department. Students have a maximum of two attempts to successfully pass their dissertation defense.

Preliminary/Qualifying Exams

The Qualifying Examination is the principal means of determining whether a student qualifies as a candidate for the doctoral degree and progress to the second stage of the program. Its purpose is to ascertain that the student's background and intellectual development are adequate to support doctoral research in the central field. The DQE will be offered in January (both parts) and September (only data analysis).  Before taking the examination, students must have completed the core courses and 27 credits (nine courses) of their required coursework and have the DegreeMap finalized. Students must also submit a Doctoral Qualifying Exam Checklist to the doctoral coordinator.

The Qualifying Examination consists of two parts: a two-part written examination and a focus area exam.

Written Exam (Part I)

This exam consists of a two-hour, in-class exam covering EMSE 6765 and an eight-hour, take-home exam covering EMSE 8000 and EMSE 8001 . Both exams are offered during the last week in January. The EMSE 6765 -based exam is also offered during the last week in January. Students should apply to take this exam before the end of the preceding semester.

Focus Area Exam (Part II)

The Focus Area Exam is both a written and oral exam. Students must take this exam by the end of the semester following the successful completion of DQE part I (i.e., student will nominally complete Part I in January, and must take Part II in the third week of May). Students should register for EMSE 8999 for the semester in which they are taking the exam.

Students have three options for the basis for their oral defense:

  • A conference or journal paper, on which they are the lead author. If it is a conference paper, the full paper must have been peer-reviewed.
  • A seminal journal paper in their focus area. Their advisor and examining committee must approve the paper.
  • A 10-page literature review on a topic in their focus area. They have two weeks to complete the review.

In all cases, students are required to defend the work in front of a committee. The committee must consist of three faculty members, at least two of which are full-time in EMSE. Oral exams are approximately one hour long.

At the discretion of the committee, a student who fails any part of the qualifying examination may be given a second opportunity to attempt qualification for candidacy. Usually, only the failed portion of the examination must be retaken. Students who fail to qualify for candidacy in a doctoral program of the School are considered to have failed on a school-wide basis and will not be admitted to further doctoral study within the School.

After successful completion of the DQE, the candidate's advisor will present the academic record of the candidate and request the formation of a research committee. The Department votes on (provisional) admission to candidacy and the research committee. The research committee must be formed before the proposal defense (described below) and must consist of the student’s advisor and two other faculty members, at least one of which must be full-time. Once the student is admitted to candidacy for the degree, he/she begins specialized study and research under the supervision of their research committee. At this point the research committee remains fixed unless a change is formally requested and approved by the department chair and advisor.

Publication Requirements

Students are given 18 months from completion of DQE Part II to be accepted into a pre-approved conference for presentation on a topic relevant to their research. This presentation must be co-authored by their adviser. Failure to do so will result in termination of their candidacy in the doctoral program.

Dissertation

  • Proposal defense: After acceptance to a conference, students are required to present a written dissertation proposal to their research committee and to successfully defend the proposal in an oral defense. This proposal should consist of, at a minimum, an introductory chapter, a review of the literature chapter, a methodology chapter, and a chapter on potential results. The Request for Proposal Defense form must be filed and approved two weeks prior to the defense. The Form 5 Doctor of Science Dissertation form is present at the proposal defense and, after a successful defense, is signed by all committee members. After the defense, the advisor in collaboration with the student submits, in writing, a copy (signed by student and adviser) of all suggestions, clarifications, and corrections to the proposal along with the signed Form 5 to the doctoral coordinator within four weeks of the defense. Failure to do so will void the defense. The doctoral coordinator forwards the Form 5 to the department chair for signature. Students are given a maximum of two attempts and a maximum time limit of two years past the semester in which they pass their DQEs to successfully defend their proposal. Failure to do so will result in termination of their candidacy in the doctoral program.
  • Final examination/doctoral defense: Once the dissertation has been completed and accepted by the faculty advisor and research committee, students may file a Request for Final Examination form with the Doctoral Coordinator. This form must be filed and approved by the department chair at least two weeks prior to the final examination date. Approval is granted only when all required materials have been presented to the doctoral coordinator. The required materials include a completely filed Request for Final Examination Form, a copy of the journal article with reviews, resumes of outside evaluators and electronic and written copies of the dissertation. The final examination is oral and open to the public. The candidate must demonstrate mastery of the special field of study and of the materials and techniques used in the research. The committee of examiners may include qualified experts brought to the University especially to participate in the examination. The director of research usually serves as advocate for the candidate. Students should consult department regulations concerning the formation of the committee. The committee votes on the quality and originality of the candidate’s contribution to knowledge as well as their mastery of the scholarship and research techniques of the field. Upon a majority vote for pass, the committee recommends the candidate for the degree of Doctor of Philosophy. The vote to pass may be provisional based on committee recommendations for changes to the dissertation in terms of additional analysis, writing or clarifications.

Seminar and Colloquia Requirements

  • As described in the Publication Requirements section above, students are required to present in a pre-approved conference on a topic relevant to their research. In addition, students are also encouraged to present and participate in departmental research seminars.

Graduation and Scholarship Requirements

Students are responsible for knowing the university’s minimum GPA requirement for graduation and scholarships. Please visit the Graduation and Scholarship Requirements section on the GW Bulletin to read the requirements.

Students should contact the department for additional information and requirements.

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The PhD program requires three years of full-time graduate study, at least two years of which must be at Stanford. Typically, however, students take four to five years after entering the program to complete all PhD requirements. The University requires a minimum of 135 units for a PhD, up to 45 units of which may be transferred from another graduate program, or used toward a master's degree at Stanford.

Areas of research

Breadth requirement, qualification procedure requirements, degree progress and student responsibility.

Oral examination

Doctoral students are required to take a number of courses, both to pass a qualifying exam in one of these areas, and to complete a dissertation based on research which must make an original contribution to knowledge. The PhD is generally organized around the expectation that the student acquires a certain breadth across all areas of the department, and depth in one area.

The current areas are: Computational Social Science Decision and Risk Analysis Operations Research Organizations, Technology and Entrepreneurship Policy and Strategy Quantitative Finance

Each student admitted to the PhD program must satisfy a breadth requirement.

All first year students are required to attend and participate in MS&E 302 Fundamental Concepts in Management Science and Engineering, which will meet in the Autumn Quarter.

Each course session will be devoted to a specific MS&E PhD research area. At a given session, several advanced PhD students in that area will make carefully prepared presentations designed for first-year doctoral students regardless of area. The presentations will be devoted to: (a) illuminating how people in the area being explored that day think about and approach problems, and (b) illustrating what can and cannot be done when addressing problems by deploying the knowledge, perspectives, and skills acquired by those who specialize in the area in question.

Faculty in the focal area of the week will comment on the student presentations. The rest of the session will be devoted to questions posed and comments made by the first-year PhD students.

During the last two weeks of the quarter groups of first year students will make presentations on how they would approach a problem drawing on two or more of the perspectives to which they have been exposed earlier in the class.

Attendance is mandatory and performance will be assessed on the basis of the quality of the students’ presentations and class participation.

Each student admitted to the PhD program must pass an area qualification procedure. The purpose of the qualification procedure is to assess the student’s command of the field and to evaluate his or her potential to complete a high-quality dissertation in a timely manner. The student must complete specified course work in one of the areas of the department. The qualification decision is based on the student’s coursework and grade point average (GPA), on the one or two preliminary papers prepared by the student with close guidance from two faculty members, at least one of whom must be an MS&E faculty member, the student’s performance in an area examination or defense of the written paper(s), and an overall assessment by the faculty of the student's ability to conduct high-quality PhD research. Considering this evidence, the department faculty will vote on advancing the student to candidacy in the department at large.

The qualification procedure is based on depth in an area of the student’s choice and preparation for dissertation research. The qualification process must be completed by the end of the month of May in the student’s second year of graduate study in the department. The performance of all doctoral students will be reviewed every year at a department faculty meeting at the end of May or beginning of June. PhD qualification decisions will be made at that time and individual feedback will be provided.

The PhD qualification requirements comprise the following elements:

Courses and GPA: Students must complete the depth requirements of one of the areas of the MS&E department. All courses used to satisfy depth requirements must be taken for a letter grade, if the letter-graded option is available. Course substitutions may be approved by the doctoral program advisor or the MS&E dissertation advisor on the candidacy form or on a request for graduate course substitution form. A student must maintain a GPA of at least 3.4 in the set of all courses taken by the student within the department. The GPA will be computed on the basis of the nominal number of units for which each course is offered.

Paper(s): A student may choose between two options. The first option involves one paper supervised by a primary faculty advisor and a second faculty reader. This paper should be written in two quarters. The second option involves two shorter sequential tutorials, with two different faculty advisors. Each tutorial should be completed in one quarter. In both options, the student chooses the faculty advisor(s)/reader with the faculty members’ consent. There must be two faculty members, at least one of whom must be an MS&E faculty member, supervising and evaluating this requirement for advancement to candidacy. The paper/tutorials must be completed before the Spring Quarter of a student’s second year of graduate study in the department if the student’s qualifying exam is during the Spring Quarter, and before the end of May of that year otherwise.

Area qualification: In addition, during the second year, a student must pass an examination in one of the areas of the MS&E department, or defense of the written paper(s). The student chooses the area/program in which to take the examination. This area examination will be written, oral, or both at the discretion of the area faculty administering the exam. Most areas offer the qualifying exam only once per year, which may be early in the second year.

Each doctoral student’s progress is reviewed annually by the MS&E faculty. Typically, this occurs at a faculty meeting at the end of Spring Quarter, and appropriate email notifications are sent over the summer to the students and their advisors. It shall be the responsibility of the student to initiate each required step in completing the PhD program. To maintain good standing in the PhD program,

First year students must: 1. Complete 30 units, including MS&E 302 and doctoral courses taught by faculty in their research area; 2. Develop relationships with faculty members who can potentially serve as dissertation advisor or reading committee member. A faculty member is more likely to accept the responsibility of supervising the research of a student whom he or she knows fairly well than a student whose abilities, initiative, and originality the faculty member knows less. It is recommended that students participate in research rotations with MS&E and related faculty to facilitate the development of these relationships.

Second year students must: 1. Complete at least two one-quarter research rotations or tutorials, or one two-quarter research rotation, tutorial, or research paper, continuing to develop relationships with faculty members who might serve as dissertation advisor or reading committee member; 2. Pass an area qualifying exam or defense of the written paper(s); 3. Submit a candidacy form signed by at least one MS&E faculty member with whom they have or will complete research rotations, tutorials, or papers, and listing the course requirements agreed upon by both the student and the program advisor; 4. Complete 30 units, including most, if not all, of the required courses listed on the candidacy form; 5. Be advanced to candidacy by the faculty.

Third year students must: 1. Submit a progress form listing the dissertation topic and signed by the dissertation advisor (if the dissertation advisor is not an MS&E faculty member, the form must also be signed by an MS&E faculty member who agrees to be on the student's reading committee, as well as the student's point of contact within the department); 2. Complete 30 units, including any remaining depth courses.

Fourth year students must: 1. Select a reading committee (a dissertation advisor and two readers) with at least one member from the student's major department, and submit the reading committee form signed by each member on the reading committee; 2. Make satisfactory progress on their dissertation as determined by their dissertation advisor; 3. If the student has not transferred any previous graduate units to Stanford, complete 30 dissertation units.

Students beyond their fourth year must make satisfactory progress on their dissertation as determined by their dissertation advisor and approved by the faculty. Indeed, the dissertation advisor will have to present the case to (and seek approval for good standing of the student from) the faculty in the annual faculty meeting for student review. It should be noted that each student inherently has to pass the oral examination (see below) and submit their dissertation before their candidacy expires.

Oral Examination

As administered in this department, the University oral examination is a defense of the dissertation; however, the candidate should be prepared to answer any question raised by any members of the Academic Council who choose to be present. The examining committee consists of the three members of the reading committee as well as a fourth faculty member and an orals chair. The chair must be an Academic Council member and may not be affiliated with either the Department of Management Science and Engineering nor any department in which the student's adviser has a regular appointment; emeriti professors are eligible to serve as an orals chair. It is the responsibility of the student's adviser to find an appropriate orals chair. The University oral examination may be scheduled after the dissertation reading committee has given tentative approval to the dissertation.

The student must be enrolled in the quarter of their oral examination. Students should schedule three hours for the oral examination, which usually consists of a 45-minute public presentation, followed by closed-session questioning of the examinee by the committee, and committee deliberation. The student needs to reserve a room, and meet with the student services manager to complete the oral examination schedule and pick up other paper work. This paperwork, along with an abstract, needs to be delivered to the orals chair at least one week prior to the oral examination.

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Engineering Management and Systems Engineering Online

  • Doctor of Philosophy in Engineering
  • Batten College of Engineering & Technology
  • Department of Engineering Management & Systems Engineering

Program Delivery Method

  • 100% online, with live online classes
  • Live online class attendance is required
  • Classes are usually held in the evening (Eastern U.S. Time Zone)

Why ODU for Engineering Management and Systems Engineering?

ODU's engineering management and systems engineering PhD program allows you to work with expert faculty to develop innovative solutions and conduct ground-breaking research.

You'll meet in live online classes. Your courses will blend highly theoretical knowledge with applied and pragmatic research. Then, you'll learn rigorous evaluation techniques to solidify your findings.

When you graduate, you will be prepared to teach and research at academic institutions, work at national research labs, or be a technology leader in public and private organizations that focus on innovation and technological leadership.

Admission to this program is competitive. As part of the application process, you will be matched with a faculty advisor with similar research interests. If a matching faculty advisor already has a full advising schedule, your admission may be delayed.

When you graduate, you will earn a Doctor of Philosophy in Engineering – Engineering Management and Systems Engineering.

Want to learn more? Contact us!

American Society for Engineering Management Founder's Award for Excellence in Engineering Management Education and Practice

Most Affordable Online Doctoral Degrees, 2023 -  OnlineU.com

Required Courses

  • 48 credit hours minimum

You will take:

  • Three core courses in engineering research and multivariate statistics.
  • Two elective courses from a range of topics such as engineering design, big data, systems analysis, reliability and maintainability, and risk analysis.
  • At least three subject area courses based on your research focus.
  • At least 24 credit hours of research.
  • View Courses in ODU's Graduate Catalog

Online Learning Environment

Participate in live, regularly scheduled online class meetings and access course materials online from any location. All courses follow ODU's regular academic calendar.

  • Taking Classes Online

Careers in Engineering Management & Systems Engineering

  • University Professor
  • Lead Engineer
  • Program Manager
  • Lead Technology Officer
  • Explore Career Data for Your Region at Our Career Coach Website

Calculating Cost

Rates are effective Fall 2023 and subject to change. * In-state rate assumes residency requirements are met.

  • ODU Tuition and Financial Aid

Licensure Disclosure

This program is not intended to lead to a specific state-level license.

If you plan to pursue a professional license or credential, we encourage you to explore requirements through the appropriate credentialing agency or professional organization in your state.

Have questions? Please contact us through the form above to talk to an enrollment coach.

  • Learn More About State Licensure Disclosures

Meet Your Team

You'll have a dedicated academic advisor for this program.

Contact us if you have questions about admission requirements, transferring credits, or application deadlines.

Ready to get started?

How to apply.

Admission to this program is competitive. In addition to general ODU admission requirements, you must have:

  • A master of science in engineering or a closely related technical field with a minimum 3.50 GPA from an accredited institution of higher education.
  • A bachelor's degree with a minimum 3.0 GPA from an ABET-accredited program in engineering or engineering technology, or from an accredited program in applied science.

You will also submit a research concept paper to aid in pairing you with a faculty advisor. The number of students admitted depends partly on the advising load of faculty with matching research interests. See full application details in the Graduate Catalog .

  • Request Info

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Home > Engineering & Technology > Engineering Management & Systems Engineering > ETDs

Engineering Management & Systems Engineering Theses & Dissertations

Theses and dissertations published by graduate students in the Department of Engineering Management and Systems Engineering, College of Engineering, Old Dominion University since Fall 2016 are available in this collection. Backfiles of all dissertations (and some theses) have also been added.

In late Fall 2023 or Spring 2024, all theses will be digitized and available here. In the meantime, consult the Library Catalog to find older items in print.

Theses/Dissertations from 2023 2023

Dissertation: Systemic Risk Analysis of Human Factors in Phishing , Mark Guilford

Dissertation: Human Psychology Factors Influencing Agile Team Autonomy in Post-Pandemic Remote Software Organizations , Ravikiran Kalluri

Dissertation: Reinforcing Digital Trust for Cloud Manufacturing Through Data Provenance Using Ethereum Smart Contracts , Trupti Narayan Rane

Dissertation: Electric Vehicle Routing Problem – Models and Algorithms , Hesamoddin Tahami

Theses/Dissertations from 2022 2022

Dissertation: A Systems Theory-Based Framework for Environmental Scanning in Complex System Governance , Dale E. Baugh

Dissertation: Learning Curve Characterization Within Complex Low-Rate Production Environments , Robert J. Gies

Thesis: Acquisition Career Progression Model for Navy Explosive Ordnance Disposal Officers , Andrew John Heckel

Dissertation: Hard-Real-Time Computing Performance in a Cloud Environment , Alvin Cornelius Murphy

Dissertation: A Quality Systems Economic-Risk Design Theoretical Framework , Abdallah S. Thefeid

Dissertation: Predictors of Email Response: Determinants of the Intention of not Following Security Recommendations , Miguel Angel Toro-Jarrin

Dissertation: Complex System Governance Leadership , David C. Walters

Theses/Dissertations from 2021 2021

Thesis: Quantifying Cyber Risk by Integrating Attack Graph and Impact Graph , Omer F. Keskin

Dissertation: Cybersecurity Risk Assessment Using Graph Theoretical Anomaly Detection and Machine Learning , Goksel Kucukkaya

Dissertation: Application of a Blockchain Enabled Model in Disaster Aids Supply Network Resilience , Farinaz Sabz Ali Pour

Theses/Dissertations from 2020 2020

Dissertation: A Framework for Adaptive Capacity in Complex Systems , Abdulrahman Alfaqiri

Thesis: Engineering Management Competencies: A Framework for Present and Future Engineering Environments , Christopher Vaughn Barrett

Dissertation: DOD Mission Engineering and Integration Explorative-Exploitative Architecture for Technology Innovation , Jose L. Bricio-Neto

Dissertation: A Quest to Identify the Emerging Leadership Skills in VUCA World and Investigation of Their Applications in Various Organizational Levels and Security Environments , Ali Can Kucukozyigit

Dissertation: Cyber-Assets at Risk (CAR): Monetary Impact of Personally Identifiable Information Data Breaches on Companies , Omer Ilker Poyraz

Dissertation: Using Interacting Multiple Model Filters to Indicate Program Risk , Amy Sunshine Smith-Carroll

Dissertation: An Investigation on the Effectiveness of a Problem Structuring Method in a Group Decision-Making Process , Ying Thaviphoke

Dissertation: A Core Reference Hierarchical Primitive Ontology for Electronic Medical Records Semantics Interoperability , Ziniya Zahedi

Dissertation: Human Error in Commercial Fishing Vessel Accidents: An Investigation Using the Human Factors Analysis and Classification System , Peter J. Zohorsky

Theses/Dissertations from 2019 2019

Dissertation: Evaluating Stakeholder Bias in Stakeholder Analysis In Social Media , Ahmad A. Bajarwan

Dissertation: An Investigation of General Criteria for Assessing Space Flight Systems of Diverse Mission Concept Designs , Cindy L. Daniels

Dissertation: Knowledge Sharing and Creative Confidence in Promoting Employees’ Creative Behavior , Elnaz Dario

Dissertation: Optimization of Automated Guided Vehicles (AGV) Fleet Size With Incorporation of Battery Management , Ahmed Hamdy

Dissertation: An Exploratory Study of Engineering Identity Development in African American Youth , Coletta Elayne Johnson Bey

Dissertation: Identifying and Quantifying Personnel Skills Gaps , Martin Joseph McKenney

Dissertation: Measuring Risks of Interdependencies in Enterprise Systems: An Application to Ghana’s Salt Enterprise , Yaw Mensah

Dissertation: Quantifying Impact of Cyber Actions on Missions or Business Processes: A Multilayer Propagative Approach , Unal Tatar

Dissertation: Development and Initial Evaluation of a Reinforced Cue Detection Model to Assess Situation Awareness in Commercial Aircraft Cockpits , Aysen K. Taylor

Dissertation: A Comparison of Multi-Attribute Utility Theory, the Analytic Hierarchy Process, the Analytic Network Process, and New Hybrid Approaches for a Case Study Involving Radon , Jesse Ray Toepfer

Dissertation: The Resilient City: A Platform for Informed Decision-Making Process , Jarutpong Vasuthanasub

Theses/Dissertations from 2018 2018

Dissertation: A Framework for Executable Systems Modeling , Matthew Amissah

Dissertation: The Influence of Engineers on Public Policy , Sarah Bouazzaoui

Dissertation: Contextual Framework of Communications Functions Supporting Complex System Governance , Charles Wesley Chesterman Jr.

Dissertation: A Representation of Tactical and Strategic Precursors of Supply Network Resilience Using Simulation Based Experiments , Yaneth C. Correa-Martinez

Dissertation: Sequence-Based Simulation-Optimization Framework With Application to Port Operations at Multimodal Container Terminals , Mariam Aladdin Kotachi

Dissertation: Human-Intelligence and Machine-Intelligence Decision Governance Formal Ontology , Faisal Mahmud

Dissertation: Exploring Critical Success Factors of Community Development Projects , Kevin Wanjama Muchiri

Dissertation: A Multi-Level Longitudinal Investigation of Transformational Leadership Influence on Team Members Development in Engineering Project Teams , Nathapon Siangchokyoo

Dissertation: Understanding the Impact of Large-Scale Power Grid Architectures on Performance , Ange-Lionel Toba

Dissertation: Case Study on the Development of Engineering Design Modification Projects for U.S. Nuclear Power Plants: A Knowledge Retention Tool in Support of the Longevity and Resilience of the Nuclear Power Industry , Pamela M. Torres-Jiménez

Theses/Dissertations from 2017 2017

Thesis: Role of Requirements Engineering in Software Project’s Success , Sujatha Alla

Dissertation: A Hilbert Space Geometric Representation of Shared Awareness and Joint Decision Making , Mustafa Canan

Dissertation: An Investigation into Perceived Productivity and Its Influence on the Relationship Between Organizational Climate and Affective Commitment , Kaitlynn Marie Castelle

Dissertation: Emergency Diesel-Electric Generator Set Maintenance and Test Periodicity , Stephen John Fehr

Thesis: Initiating Event Analysis of a Lithium Fluoride Thorium Reactor , Nicholas Charles Geraci

Thesis: Impact of a Localized Lean Six Sigma Implementation on Overall Patient Safety and Process Efficiency , Luvianca G. Gil-Moreno

Dissertation: Diversity Team Building: Impact on Virtual Team Performance , Nina C. Magpili-Smith

Dissertation: Implementation of a Multi-Criteria Decision Analysis (MCDA) Toolkit to Aid in Ranking Naval Mission Vessel Combinations With Uncertainty , Andrew R. Miller

Dissertation: A Predictor Analysis Framework for Surface Radiation Budget Reprocessing Using Design of Experiments , Patricia Allison Quigley

Dissertation: Analysis of Project Management System Structure Using the Viable System Model (VSM) , Joseph A. Sisti

Dissertation: Planning and Team Shared Mental Models as Predictors of Team Collaborative Processes , Zikai Zhou

Dissertation: Methodology to Perform Cyber Lethality Assessment , Matthew W. Zurasky

Theses/Dissertations from 2016 2016

Dissertation: Systems Theory Based Architecture Framework for Complex System Governance , Bry Carter

Dissertation: Profit Based Simulation Model for The Rail Transportation Industry , Mark Patrick Doran

Thesis: Design and Implementation of a Virtual Team Collaboration System , Syed Ehsan

Dissertation: A General Theory of Emergence in Engineered Systems , John J. Johnson IV

Dissertation: Improvement of Work Process Performance with Task Assignments and Mental Workload Balancing , Cansu Kandemir

Dissertation: An Outcome-Based Competency Model for Systems Engineering Trainees , Vanessa J. Pietrzyk

Dissertation: A Hybrid Tabu/Scatter Search Algorithm for Simulation-Based Optimization of Multi-Objective Runway Operations Scheduling , Bulent Soykan

Thesis: Extension of the Gravity Model: A Risk Integrated Approach Towards the Impact Analysis of Mega Sports Events on Inbound Tourist Arrivals , Abdul Sami Stanekzai

Dissertation: A Retrospective Study of Amusement Ride Restraint and Containment Systems: Identifying Design Challenges for Statistically Rare Anthropometric Cases , Paula M. Stenzler

Theses/Dissertations from 2015 2015

Dissertation: An Approach for the Development of Complex Systems Archetypes , Walter Lee Akers

Dissertation: Meta-RaPS Hybridization with Machine Learning Algorithms , Fatemah Al-Duoli

Dissertation: Management and Leadership Style: Is Style Influenced by Engineering Education? , Jesse Levi Calloway

Dissertation: Key Factors Driving Personnel Downsizing in Multinational Military Organizations , Ilksen Gorkem

Dissertation: A Framework to Simplify the Choice of Alternative Analysis and Selection Methods , James Paul Lewis Holzgrefe

Dissertation: Systems Theory-Based Construct for Identifying Metasystem Pathologies for Complex System Governance , Polinpapilinho F. Katina

Dissertation: An Analysis of the Relationship Between Military Leaders' Operational Adaptability and Knowledge Transfer , Vahap Kavaker

Thesis: Improving Response Characteristics of Split Ring Resonators Using Experimental Designs , Omer Faruk Keskin

Dissertation: Examining the Relationship Between Leadership Decision Making Styles and Personality Type Within the Department of Defense , Antoine Lamont Prince Sr.

Dissertation: Command and Control in the Information Age: A Case Study of a Representative Air Power Command and Control Node , Marvin Leo Simpson Jr.

Dissertation: The Role of Diversity on Team Effectiveness in a Multinational and Multicultural Military Environment , Mustafa Utoglu

Dissertation: Safety Culture Monitoring: A Management Approach for Assessing Nuclear Safety Culture Health Performance Utilizing Multiple-Criteria Decision Analysis , James Harold Warren Jr.

Theses/Dissertations from 2014 2014

Dissertation: A Systems-Based Framework for the Assessment of Performance Measurement System Implementations in R&D Organizations , Kenneth S. Baggett Jr.

Dissertation: Human Capital Management Within the Federal Government Utilizing Generational Stratification With a Focus on Generation Y , Ian Nathaniel Barford

Dissertation: Time-Based Collision Risk Modeling for Air Traffic Management , Alan E. Bell

Dissertation: An Investigation of Business Transformation Disruptors at the Military Strategic Command Level , Thomas Bock

Dissertation: Systems Theory Based Framework for Competency Models , Joseph M. Bradley

Thesis: Emergency Diesel-Electric Generator Set Maintenance and Test Periodicity , Stephen John Fehr

Dissertation: An Instrument to Assess Individual Capacity for System Thinking , Ra'ed M. Jaradat

Thesis: Simulation Modeling and Analysis of Customs-Regulated Container Terminal Operations with Multimodal Transportation , Mariam A. Kotachi

Thesis: Assessing Organizational Effectiveness Through the Competing Values Framework A Data Envelopment Approach , Raghavender Macherla

Dissertation: Assessing the Impact of Electronic Health Record Systems Implementation on Hospital Patient Perceptions of Care , Katherine Sofia Palacio Salgar

Dissertation: Graphical Display of the Effect of Three Cash Flow Elements for Sensitivity Analysis , Kawintorn Pothanun

Dissertation: Self-Regulating Teamwork Behaviors in Low-Volume & High-Complexity Production , Aaron W. Powell

Dissertation: An Investigation into the Analysis of Truncated Standard Normal Distributions Using Heuristic Techniques , John Walter Ralls

Dissertation: A Method to Define Requirements for System of Systems , Randy Gene Walker

Dissertation: The Relationship Among HFACS Levels and Analysis of Human Factors in Unmanned and Manned Air Vehicles , Veysel Yesilbas

Theses/Dissertations from 2013 2013

Dissertation: System Governance Analysis of Complex Systems , Behnido Y. Calida

Dissertation: Shared Leadership in Six Sigma Teams From the North Shore-LIJ Health System , Brian J. Galli

Dissertation: An Expert Based Multi Attribute Group Decision Making (MAGDM) Model for Portfolio Evaluation: Application on Ground Force Units , Metin Gultekin

Dissertation: Approximate Algorithms for the Combined arrival-Departure Aircraft Sequencing and Reactive Scheduling Problems on Multiple Runways , Gulsah Hancerliogullari

Dissertation: The RQ-Tech Methodology: A New Paradigm for Conceptualizing Strategic Enterprise Architectures , Christine Ann Hoyland

Dissertation: Micro to Macro Dynamics of Shared Awareness Emergence in Situations Theory: Towards a General Theory of Shared Awareness , Samuel F. Kavacic

Dissertation: Naval Surface Warfare Center Dahlgren Division Engagement Systems (G) Department Development of a Plan to Maintain, Expand, and Create Corporate Knowledge , Luis J. Rodriguez

Dissertation: An Epistemological Inquiry into the Incorporation of Emergency Management Concept in the Homeland Security with a Post-Disaster Security Centric Focus , Mehmet Secilmis

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PhD in Engineering Management

Advancing engineering research and leadership.

The industry leaders of tomorrow must earn their credentials today. Enroll in Western New England University’s PhD in Engineering Management program and prepare to take your place at the top of your organization. In this full- or part-time program , you will learn at a technical depth and gain the breadth of knowledge to become a successful practitioner, researcher, teacher, and mentor in the management of engineering and technology. You will develop the skills needed to conduct rigorous research in areas related to the improvement, design, and management of projects and programs within complex human/technological systems, including engineering, quality, healthcare, service, and logistical/transportation systems. You have the option to complete the PhD in Engineering Management 100% online . This is an excellent option for working professionals interested in pursuing their program part-time at our nationally recognized university.

Why Choose the PhD in Engineering Management?

It is the philosophy of the program to graduate students who have the ability to create, evaluate, improve, design, and manage complex human technological systems. Additionally, students will demonstrate the ability, through dissertation research, to contribute to the body of knowledge in the field of engineering management. The systems include engineering/manufacturing systems, service systems, and logistical systems.

 Fatima: PhD in Engineering Management

What to Expect

The PhD in Engineering Management focuses on developing skills needed to conduct rigorous research in areas related to the improvement, design, and management of projects and programs within complex human-technological systems.

What Will You Study?

The PhD in Engineering Management focuses on developing skills needed to conduct rigorous research in areas related to the improvement, design, and management of projects and programs within complex human-technological systems. Students take 10 courses before beginning a dissertation research project, including five core courses that establish a foundation of knowledge from which each student can explore their area of interest. Core courses are Engineering Supply Chain, Operations Research, Project Management, Strategic Economic Decision Making, and Seminar/Research Methods for Engineering Management. After the core is complete, a plan of study is developed in consultation with a research advisor that considers the dissertation research of the student. Whether you pursue your studies on campus or fully online, you will work regularly with your advisor, a content expert in your field of interest. You can be confident that you will have support throughout your educational journey.

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Admissions requirements.

Candidates for the PhD in Engineering Management should possess a master’s or bachelor’s degree in engineering or closely related discipline. A cumulative GPA of at least a 3.5 (4.0 scale) will be required for admission. A GRE score* from the last five years, with a combined verbal and quantitative score of at least a 300 with a quantitative score in at least the top 40 th  percentile will be required for consideration.  Candidates below established GPA and GRE requirements will be considered on a case-by-case basis. Candidates whose primary language is not English will be required to demonstrate proficiency in English . Applicants must also have evidence of completion of a probability and statistics course with a grade of at least a “B” and be able to demonstrate competence in at least one structured programming language (R, Python, C++, etc.).

*The College of Engineering will consider waiving the GRE requirement based on progressive industry experience, academic performance, a recommendation from a research advisor, and an interview. The interview can be scheduled at any point during the application process by emailing Dr. Christian Salmon, Department Chair for Industrial Engineering and Engineering Management, at [email protected] .

Admissions Process

The personal attention you’ll receive from our faculty is unparalleled. They’ll become your mentors, learning partners, and colleagues during your education. Not only will you work with them in the classroom, but you’ll also have the opportunity to collaborate with faculty on research and development projects. Their interests are in areas such as supply chain management, discrete event systems, quality, reliability, global health, human factors, and risk management.

How are courses offered?

Course Delivery: In-class or online* Total Credits: 57-72

Options for attending courses include fully in-class, fully online, as well as hybrid in-class and online to accommodate work and family. All lectures will be captured and available for online review. The program will capture all lecture-based presentations using the echo360 lecture capture system.

If you are interested in completing the program fully online, you will have an initial consultation with the Department Chair to discuss your goals and how an online approach could work for you, with particular attention to dissertation requirements. Once enrolled in program, you will be paired with a faculty advisor who will be a content expert in their field based on your research interests.

*International candidates will be required to attend in-class sessions in order to be in compliance with student visa requirements.

Program Goals & Philosophy

Goals/Principles

The goal of the program is to prepare graduates with the appropriate technical depth and breadth of knowledge so that they may be successful educators, researches, and practitioners in the management of complex human technological systems. The program will follow three principles in pursuit of this goal. In addition to passing the required coursework, students must also pass a comprehensive examination to demonstrate a mastery of Principles 1 and 2.

Principle 1: Provide a Solid Foundation and Depth in Engineering Management Theory and Practice

A solid fundamental understanding of a field is essential in order for students to be considered an expert in that field. This is true for Engineering Management as well. It is the fundamentals that a student will need to expand upon in order to contribute new knowledge to the field of engineering management. We place an emphasis on the fundamentals of the management of complex human technological systems and an emphasis on the modeling and analysis of such systems.

Principle 2: Provide Breadth Across Multiple Types of Human Technological Systems

Principles, tools, and fundamentals of engineering management have been rooted in engineering and manufacturing systems. These tools have also been successfully applied to other systems such as service and transportation/logistical systems. Today engineering managers can be increasingly found in banks, hospitals, amusement parks, airlines, and a variety of delivery agencies. On the surface, these industries appear different however; they all involve people, materials, information, equipment, energy, and capital. Therefore, the program will emphasize case studies and examples within the coursework that are applications in the following three areas: 

  • Engineering and Manufacturing Systems
  • Service Systems
  • Logistical Systems

Principle 3: Contribute to the body of Knowledge in Engineering Management

A requirement of any Doctorate of Philosophy Program in Engineering is the expectation that graduating students will contribute to the body of knowledge in their chosen field by conducting research. This will be demonstrated by graduating students successfully completing a doctoral dissertation. Students conducting dissertation research will be guided by a selected advisor and advisory committee. Students must pass a dissertation approval examination in order to ensure they are prepared to conduct research. Upon the successful completion of research, graduating students will document the research results in a dissertation. Dissertations will be defended in front of advisory committees.

International Students

Leaders with engineering backgrounds are needed around the globe to manage people and resources. The College of Engineering enjoys a growing reputation among international students for the caliber of our graduate programs. Learn more about our support for international students.

KODIAK: Our User-Friendly Virtual Classroom

Kodiak is a state-of-the-art Learning Management System used by major universities and colleges around the world. It makes it easy for you to participate in class discussions, view calendars, communicate with faculty and classmates, post assignments, and view grades.

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Engineering Management Review

Welcome to ieee engineering management review (emr).

IEEE EMR is a premier outlet for the research and practice of engineering, technology, and innovation management, with a tradition of more than fifty years of publishing. EMR has built a reputation for high-quality, evidence-based practice-oriented publications.

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Tems – 5 focus areas.

Moving Product/Services from Idea to Market

Identifying and Implementing Successful Projects, and Systems

Integrating Technology for Capability and Productivity

Developing from Engineer to Leader

Balancing the Norms of Society, Government, and Regulators

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phd topics in engineering management

phd topics in engineering management

Doctor of Philosophy in Engineering Management

Explore more programs.

  • Bachelor of Science in Civil Engineering
  • Bachelor of Science in Industrial Engineering and Engineering Management
  • Bachelor of Science in Electrical and Electronics Engineering
  • Undergraduate

Students admitted to the PhD program implicitly agree to comply with all rules and regulations of the program as published on the program website. 

  • To prepare graduate engineers from various specializations for successful research careers that combine depth in engineering research methodologies with broad knowledge of the socio-economic implications associated with major engineering decisions and technology innovations.
  • To prepare graduate engineers to assume leading roles in researching the current and new approaches to effectively manage change and leverage technological innovations.
  • To enhance the creative abilities and confidence of its students in finding original solutions to pressing and complex problems;
  • To raise the level of awareness of its students with respect to long-term sustainability factors associated with the adoption of new engineering process or technology.
  • To prepare its students to be leaders in disseminating new knowledge and in imparting new concepts and ideas to members of the public. 
  •  Apply advanced knowledge, creative expert skills, good management practices, and research processes to conceptualize, formulate, analyze, and solve complex problems in the field of engineering management. 
  • Analyze and critique the state of learning in the engineering management field and contribute to its advancement and consistently and sensitively manage highly complex ethical issues leading to informed, fair, and valid judgments.
  • Communicate and report effectively to academic communities and stakeholders the results of original research. 
  • Practice leadership skills and take initiative to bring positive change in academic and professional contexts.
  • Recognize and analyze ethical concerns specific to their field of research, and the socio‐economic impact of engineering management decisions.

The student has to publish two publications in refereed journals (of class B at least) from the thesis topic. The research papers must be published in the form of refereed journal articles. Two referee review reports are required for each article. Conference articles are not accepted. 

  • Graduate Courses offered by other departments in the College of Engineering
  • Graduate Courses offered by the College of Business Administration

Study Duration and Limits

The minimum period of study for the PhD-EM degree is six semesters, whereas the maximum period is 10 semesters. Three postponements before the final semester are allowed in addition to the regular 10 semesters. The time limit may be extended, through bylaws, by two additional semesters for publication and defense purposes. Readmission to the program is also possible for special cases.

Definitions:

PhD Program Steering Committee: Selected members from the IEEM department who are in charge of administering and coordinating the PhD program including the admissions, coordination of courses offering, approving course grades, qualification exams, proposals, defenses, curricular changes and other program level activities and duties. The PhD program steering committee shall be the authority that is in charge of any program level final decisions, appeals and approvals.

PhD Examination Committee: A special committee for each PhD student that consists of the student supervisor/supervisors and 2 other examiners, who are assigned to the student since the registration of the qualification exam until the PhD defense. The committee is responsible of preparing and grading the qualification exam part II, examining the PhD proposal, providing comments, evaluating and approving the proposal. The examination committee will continue to serve in the defense committee through examining the student in the defense stage, providing comments and dissertation evaluation and approval.

PhD Defense Committee : A committee which consists of at least three examiners, two of which are the members of the examination committee and one is an external examiner. The committee will examine the PhD student in the defense phase, provide comments, and finally form a decision on the student research thesis and defense.

External Reviewer : An anonymous external faculty member, selected by graduate studies, who will take the role of blind evaluation of the student work prior to defense. The student must secure the external reviewer approval to proceed to the defense phase.

External Examiner : A faculty member who may be nominated by the supervisor to serve in the defense committee. The PhD program steering committee can overrule the nomination of the supervisor according to the examiner qualifications/credentials/affiliations and the student area of research.

Program Procedures

  • Qualification exam – General Information
  • The qualification exam consists of two written parts and may include an oral part. Each written part is prepared on a separate document(s) and should be given on a separate day. Each written part shall be 3 hours long.
  • The second part of the written exam should be held no later than a month after the first part.
  • The first written part covers the general background and basic knowledge of the student in the field of Engineering Management. Only the titles of the subjects from which the test questions for this part are derived may be supplied to the student. The student will not be given any study materials for part I.
  • The second written part includes specialized topics in the field of the student future thesis work, and may include chapters from specialized books and/or research papers. The student examination committee may choose to hand in a study material to the students (A Typical study material would consist of 9 to 12 sets in the form of articles, book chapters, reports, etc.)
  • The coordinator informs the students about the selected topics for the first part and each supervisor informs his/her student(s) about the topics of the second part. Upon the consent of the student examination committee, study material shall be delivered to students only for part II.
  • Each part counts as 50% of the final grade. The pass grade is 70% for each part and the student must pass both parts to proceed in his study.  
  • Registration in the PhD Qualification Exam (0405-709)
  • The student can register for the qualification exam if he/she has completed the program mandatory courses (9​​ credit hours) with a minimum CGPA of 3 out of 4 and has an approved supervisor through a signed and approved Supervisor Selection Form.
  • A student who cannot secure a PhD supervisor is not eligible to take the qualification exam.
  • The student has to fill out and submit the Qualification Exam Registration Form to the PhD program coordinator, after obtaining the endorsement from the student's supervisor. The form is available on the website of the PhD program in engineering Management.
  • After the approval of the PhD program coordinator, the PhD academic officer in IEEM requests to register the student in the Qualification Exam (0405-709) course (zero credit hours) through the form G-50A. Once the request is approved by the dean of graduate studies, the registrar in the graduate studies will register the course for the student.  
  • Step 3 should be accomplished before the beginning the semester in which the student plans to take the qualification exam.  
  • Preparation of the Qualification Exam
  • The PhD program steering committee assigns three faculty members from the IEEM department every semester to prepare the qualification exam part I.
  • The qualification exam part II should be prepared by the examination committee (which consists of the supervisors and two other members). The PhD program coordinator should liaise with the examination committee to facilitate this task.
  • The PhD program steering committee sets the exam dates and the PhD program coordinator informs all registered students about their exam dates. The student should be given at least one month in order to prepare for the two parts of the exam.
  • The faculty members in charge of both parts of the qualification exam are responsible for the preparation and grading of the student qualification exam questions and answers. All selected members should be engaged in preparing the questions and hence the grading process.
  • The PhD program coordinator and the PhD student supervisor(s) are in charge of the logistics and organization of the two parts of the written exam, in coordination with the program administrative assistant (room booking, timing, printing the exam questions, collecting the answer sheets, organizing the grading session(s)…).
  • The exam grades should be reported to the PhD program coordinator and then approved by the PhD program steering committee. The PhD program steering committee may decide the cases for which an oral exam needs to be considered in consultation with the examination committee.
  • The outcomes of the oral exam will be taken into account in the final grade of the student's qualification exam.
  • The PhD program coordinator submits the final “pass/fail" grade to the college of graduate studies using the online form G-50B.
  • The student may only sit for the qualification exam twice. If he\she fails the second time, he\she will be expelled from the program.
  • PhD Thesis Proposal

1-      In the semester that follows the PhD Qualification Exam (0405-709), the student can register in the Ph.D. Research Proposal (0405-792) course (6 credit hours) if the student has passed the qualification exam. 

2-      The student prepares the Ph.D. Research Proposal under the supervision of his/her supervisor(s).

3-      During the semester in which the student registers the Ph.D. Research Proposal, the student submits his/her Ph.D. Research Proposal to the PhD program coordinator along with the Proposal Check List Form signed by the supervisor.

4-      The PhD program coordinator sets a date of a public presentation for the discussion of the proposal no later than 2 weeks following the submission date. The PhD program coordinator and the examination committee must attend the presentation session. Members from the PhD program steering committee who attend the presentation are also entitled to ask questions.

5-      The proposal presentation should be at least 2 weeks before the deadlines fixed by the graduate studies for receiving the proposals and theses supervisor approvals.

6-      After the proposal presentation and discussion, each member in the PhD examination committee submits a report to the PhD program coordinator (Proposal Evaluation Form) within 3 days. The form details the examiner evaluation and recommendations.

7-      The forms are collected by the PhD program coordinator and the grades are compiled and a decision is formed as follows:

8-      The student should modify his/her PhD Research Proposal while taking care of the  PhD examination committee recommendations, then submits it to the PhD program coordinator.

9-      The modified PhD Research Proposal should be approved by the PhD examination committee, if the examination committee requests additional modifications, the PhD program coordinator should inform the student to undertake the necessary modifications then submits the proposal to the committee until the student secures an approval.

10-  The decision of the examination committee and the final modified proposal must be sent to the PhD program steering committee for approval.

11-  The PhD program coordinator submits the accepted PhD Research Proposal and the name of the supervisor(s) through Approval of Thesis Proposal and Supervisor Form (G12-A) to the Dean of the College of Graduate Studies for final approval.

12-  If the PhD Research Proposal is not submitted/not approved during the semester of the first registration (6 Credit Hours) in the course Ph.D. Research Proposal (0405-792), then the student registers “0" Credit Hours for the proposal in the subsequent semester.

13-  The PhD research proposal must be completed in at most two semesters. 

PhD Thesis and Defense

  • The student and assigned supervisor shall collaborate together until the student finalizes his PhD dissertation.
  • The supervisor reviews the PhD student research work at least once a semester to assess the student's progress and to provide advice on future work. The supervisor reports the review to the graduate studies.
  • A student who completes his thesis and upon the approval of the supervisor should submit the dissertation file to the PhD program coordinator for external review.
  • The supervisor can nominate two potential external reviewers for the PhD program coordinator who in turn will report the names and the dissertation file to the graduate studies. The graduate study may select other external reviewers from their own pools outside the nominated list.
  • The student must repeatedly incorporate the external reviewer comments until he secures an approval or at least a minor revision.
  • An approval to form a defense committee will be issued by the graduate studies once the external reviewer approves the thesis. The supervisor nominates one external examiner for the defense committee in addition to the internal appointed examination committee.
  • In addition to the criteria stated in the executive regulations of graduate studies, the external examiner must have a good research profile and should be active in research in the related area of the PhD student.
  • The PhD program steering committee may appoint an external examiner other than the one nominated by the supervisor following the same criteria mentioned above and after consulting with the main supervisor.
  • The student must fulfill the publication requirements of the graduate studies before the defense.
  • A public defense is organized in coordination with the program coordinator, supervisors, examiners and the student.
  • The defense examination committee forms a final decision about the student thesis which can be Minor Revision, Major Revision, Fail.
  • In minor revision, the student is given 3 months to amend his work and to obtain the defense committee approval.
  • In major revision, the student cannot submit his work before 6 months and no later than 12 months of the first defense. Another defense session is required in this case.
  • In case of a fail decision, the student will not be awarded the PhD degree and can only get a record of his transcripts from the registration department.

General Admission Requirements and Regulations

Information on the general admission requirements and regulations can be found here​

Special Admission Requirements

  • The student must hold a bachelor's degree in any engineering fields and master's degree with a minimum grade of "Very Good" (3.0 out of 4.0) and a bachelor's degree with a minimum grade of 2.5 out of 4.0 or equivalent from a university, college, or an institute recognized by the Ministry of Education of the UAE.
  • Students in programs taught in English must obtain 550 on the TOEFL (PBT) (should be taken inside the university), 79 on the TOEFL (IBT) (outside the university) or 6 on IELTS (Academic).
  • Passing the personal interview.
  • Attachment of 'no objection certificate' from the authorities responsible for national service for male Emirati students.
  • Attachment of a letter of study approval from Kuwait Embassy Cultural Office for Kuwaiti students only.
  • Attachment of People of Determination card (if applicable).
  • In case the student works in a certain place, please attach a letter from the employer stating that the student is working for this agency.

0405-701 Advanced Engineering Management Research Methodologies

This is an intensive course on how to conduct in-depth high level academic research devoted to engineering management. The course is designed to prepare students to develop their own research studies, and to understand and incorporate the elements of effective research designs. The course is a blend of research design, data management and methods, and skills development. Topics of the course include: identifying research problem, developing purpose statement and research objectives and questions/hypotheses, conducting deep literature reviews and identifying research gap, setting theoretical foundations of research, mastering types of academic research, setting research design and understanding the main advantages and drawbacks of different research designs, collecting primary and secondary data, data coding and cleaning, experiments, data analysis methods, creating data visuals, managing the research  stakeholders, and communicating research outcomes.​

0405-723 Decision Making and Analysis 3:3

Topics include basic theory of decision making under uncertainty; rationales of decision makers; the concept of the value of information; the Bayesian approach to decision making; decision trees, elicitation methods for model building, multi-attribute utility models; multi-criteria decision making; use of decision making software. 

0405-760 Leadership and Innovation Management 3:3

This course focuses on the classical and modern aspects of organizations and the role of managers as leaders. The main focus of the course is to provide students with knowledge and skills on different approaches to leadership. The course deals with different forms of leaderships in a corporate setting, and their importance in achieving the organization's strategies. The course also focuses on main issues in innovation management. It equips students with tools and techniques for managing innovation. It includes basic terms related to innovation; development of innovation strategy; factors influencing innovation; sources of innovations, managing intellectual property, development of new product and services within a firm; strategic alliances and networks; contemporary issues in innovation management; case studies.

0405-762 Total Quality Management 3:3

This course introduces definitions, history, dimensions, and principles of Total Quality Management (TQM); quality management philosophies and pioneers (Deming, Juran, Crosby, Ishikawa, Taguchi, Feigenbaum); customer satisfaction and customer relationship management; quality awards (Deming, EFQM, Malcolm Baldrige); SPC tools, benchmarking, QFD, and use of software.

0405-712 Engineering Modeling and Optimization 3:3

This course introduces the concepts of optimization by presenting different classes of problems and engineering applications. Topics include the art and science of modeling and solving engineering decision making problems using a variety of frameworks ranging from linear programming, goal programming, integer programming, nonlinear programming, network programming, and heuristic methods. Applications include product and process design, production planning, logistics, sustainable logistics, transportation, and scheduling in both industrial and service systems. Notions of stochastic optimization and sensitivity analysis are also covered to deal with uncertainties and data fluctuations.

0405-724 Engineering Design of   Experim ents 3:3

Review of basic statistical methods; Introduction to designed experiments; Analysis of variance (ANOVA), model adequacy test, determining sample size, regression approach to ANOVA; Single-factor design, two factor designs; 2 k factorial designs; Fractional factorial designs; Introduction to factorial survey experiments; Response surface methodology; Taguchi's methods; Demonstration of the implementation of the methods explained in the course using computer software packages.

0405-763 Advanced Engineering Project Management 3:3

This course includes a review of project management concepts including planning and scheduling; strategic planning for project management; human resources management, managing multiple projects, contemporary issues in project management; case studies.

0405-765 Management of Technology 3:3

This course examines a wide range of topics and issues involved in the management of technology including planning tools and techniques in strategic planning for different technologies, technology capability assessment, technology forecasting; the development environment and infrastructure, R&D management, product development process; technology transfer; licensing, joint venture and other forms of alliances; technology protection; case studies and project.

0405-725 Data Analytics

The course covers the fundamentals and key concepts of artificial intelligence and machine learning techniques. The course presents several supervised and unsupervised machine learning techniques, in addition to techniques used to select and process input features. Students will also learn how to understand the data and visualize it.

0405-731 Logistics and Supply Chain Management

Logistics and supply chains constitute the backbone of production systems and of international trade. They are essential elements in order to understand and analyze production systems in both

manufacturing and service firms. They study the flows of materials, information, and funds from the suppliers, to the manufacturers, distributors, retailers, and customers, and vice versa. This course

covers classical topics of logistics and supply chain management including understanding the supply chain and logistics systems, designing networks, and studying the operations that are necessary to manage supply chains and logistics. Contemporary topics such as digitalization, sustainability, and circular economy in the context of logistics and supply chain management are also covered.

0405-781 Special Topics in Engineering Management 3:3

This course examines advanced and emerging topics in engineering management. The course may be offered to suit the academic need of the student based on the supervisor recommendation and the program coordinator approval.

0405-782 Independent Studies in Engineering Management 3:3

This course helps the student in exploring specific areas of interest or enables him/her to develop in-depth research in a field of interest. The topic should be related to the area of interest in which the student is planning to prepare his/her thesis. The course intends to complete the knowledge of the student while allowing him/her to develop his/her critical thinking and analysis. The registration in this course and its topic should be approved in advance by the student's potential thesis supervisor and the PhD program coordinator.

0405-791 PhD Seminar 1:0

Students are required to attend seminars given by faculty members, visitors, and graduate students. Students must submit reports of the seminars they attended. They are also required to present one seminar on a timely research topic.

0405-709 Qualification (Comprehensive) Examination 0:0

The examination aims to measure the student's ability to understand and demonstrate a general understanding of his/her discipline, show the ability of critical, analytical, and creative thinking and employ them in solving problems and proposing appropriate solutions. It is not another test in the courses studied by the students. This exam consists of both written and oral parts. Pre-requisites:   Completion of all mandatory courses and approval of the program coordinator and dean of graduate studies.

0405-792 PhD Research Proposal 0:6

Students must submit a research proposal topic under the supervision of a faculty member. The proposal should layout the literature survey of related work to the proposed research topic to be undertaken.  Methodology and expected results should be presented in the proposal. The proposal should be approved by the supervisor and defended before an examination committee. Recommendation of the committee should be considered in the implementation phase of the thesis. Pre-requisites: 0405-709 Qualification (comprehensive) Examination.

0405-799 PhD Thesis 0:21

Students must undertake and complete and independent industrial-oriented and/or theoretical research under the supervision of a faculty member. Students are required to submit a thesis documenting their research and defend it in an oral examination before a committee. The thesis work must make a significant contribution to knowledge in the field of engineering management and innovation.  Students are required to produce at least two refereed journal publications (at least class B) of their work before defending the thesis.

  Pre-requisites: 0405-792 Ph.D. Research Proposal and 0475-791 PhD Seminar.

Department of Industrial Engineering and Engineering Management

College of Engineering

University of Sharjah

e-mail :  [email protected]

Phone:  00 971 6 505 3921 

Dipartimento di Ingegneria Gestionale

PHD PROGRAMME

Phd programme in management engineering.

The PhD programme in Management Engineering (DRIG) offers an advanced education together with the opportunity of carrying out research work in the fields of management, economics and industrial engineering.

The programme ensures that candidates build up a solid methodological background, allowing them to develop their multidisciplinary knowledge, an open minded approach to research and the ability to address problems in an innovative way, while combining different perspectives and approaches.

The Department of Management, Economics and Industrial Engineering’s commitment to research and its scientific collaborations with other institutions provide candidates with an ideal environment in which to pursue research in their personal fields of interest within a broad spectrum of different topics.

In order to get more information and support, we invite you  to fill the following enquiry form , specifying the PhD programme of interest.

Location: Milan

Language: English

Format: Full Time/Part Time

Duration: 3 to 4 years depending on the Programme

Application:

  • Annual call:  May
  • Additional calls for applications: see the section “How to apply” and the link here

Required degree: University Master of Science degree (or equivalent)

Contacts Email: [email protected]

This video brings the voice of PhD candidates, DRIG alumni, and external stakeholders giving an insight into the PhD experience and useful suggestions for future PhD candidates. It helps to understand what is the PhD programme in Management Engineering and why to consider this path in one’s career and competence development.

What is a PhD and Why doing the PhD programme

This video provides a presentation by our Programme coordinator, aimed to introduce the role of the Ph.D as a higher educational level and to provide useful information about the structure and opportunities of the Ph.D programme in Management Engineering.

ADMISSIONS AND SCHOLARSHIPS

  • HOW TO APPLY
  • SCHOLARSHIPS

To be admitted to the PhD programme, students must hold a University Master of Science degree (or equivalent). The most relevant background university studies are those in the fields of economics, management, and industrial engineering . However, students who hold degrees in other technical and scientific disciplines or in social sciences may also be admitted to the programme.

The online application opens once a year around mid-April for the full time format (Annual Call) ; application and eligibility check are permanent for the executive format.

Application period

The PhD academic year starts at the beginning of November .

The application period for each new PhD cycle starts with the Annual call, running from mid-May to June.

After the annual call,  there may be some Additional Calls for PhD places with scholarships linked to specific research topics. Candidates who apply to these additional calls will be enrolled to the ongoing PhD cycle .

Knowledge of English is required; to this end, applicants are required to submit one of the certificates listed here (Admission Criteria)  no later than end of October, if not already submitted at the closing date of the call. Failure to submit certificates within the established closing date for enrolment irrevocably results in the loss of the right to enrolment. Certifications are valid regardless of the date when they were awarded.

Citizens of Countries in which English is an official language are not required to certify their knowledge of English; the same applies to applicants who have been awarded or will be awarded academic qualifications by an institute in which all teaching activity is carried out in English.

These applicants must attach official documents to their application; in particular, where all courses are carried out in English, this needs to be certified by the corresponding academic institute.

To be admitted to the Doctorate Programme in Management Engineering (DRIG) applicants must apply through a competitive selection process.

Admission to the PhD programme is limited to a predetermined number of candidates according to the scholarships available in the programme. This ensures the optimal development of each candidate while enriching the group’s learning and investigation process.

The candidature may apply to different types of scholarship classified as:

Generic Scholarship (Annual Call)

  • Elective Research in Management Engineering
  • Oriented Research in Management Engineering
  • Thematic Scholarship, also including interdisciplinary scholarships (Additional Calls).

Check the page  Calls and Regulations – Dottorati di Ricerca (polimi.it)  to read further details and apply.

For futher information please visit the PhD School website.

For further information about scholarships, please visit the following  page . Check the “open calls” section and look at the available scholarships in Management Engineering.

PhD PROGRAMME STRUCTURE

  • GENERAL INFORMATION
  • CONTENTS & COURSES
  • PORTFOLIO OF COURSES

The PhD programme can be full time or part time , depending on the typology of tracks:

  • General track (full-time): 3 years;
  • Executive track : 4 years. For more information click here .
  • International Agreements and Double PhD : 3/4 years. For more information click here .

The programme is built on three main pillars:

  • Development of the doctoral thesis . The thesis is the hallmark of the Ph.D. programme. It allows students to develop leading-edge research competencies and to produce an original scientific contribution on a topic relevant for academics and practitioners.
  • Main courses on research methodologies and leading-edge topics in management, economics and industrial engineering.
  • Elective training activities . Students can customize their study plan depending on their research interests. The aim is to develop students’ scientific knowledge on specific topics and to expose them to the international scientific community by attending Ph.D. schools or workshops and presenting their research at international conferences.

Ph.D. candidates fulfil their research and training requirements under the supervision of scholars who are experts in their research fields.

At the following link you can find the research lines .

The Ph.D. thesis (125 ECTS) is an original contribution to the advancement of knowledge in the candidate’s research field. The research will be supervised by members of the doctoral faculty, who will provide guidance to the candidate in setting out and arranging the everyday activities involved in the thesis development. The thesis can be edited in the form of a monograph or a collection of papers .

At the end of each year, candidates will present the progress of the research project in front of a committee and will discuss it with a Discussant from the PhD Faculty. This is a fundamental step to advance from one year to the next.

At the conclusion of the PhD studies, the Faculty Board evaluates the candidates. Candidates who receive a positive evaluation submit their theses to two external reviewers for refereeing. If the evaluation is positive (or in any case after the comments received from the external reviewers are integrated), the candidates may defend the thesis in front of a Committee composed of three members, at least two of which must be external to the Politecnico.

The resulting thesis needs to be coherent with the research lines developed in the Department where the PhD programme is developed.

Ph.D. yearbooks and thesis

The thesis abstracts are published in our yearbooks:  https://www.dottorato.polimi.it/en/phd-programmes/engineering/management-engineering

Each PhD candidate must obtain at least 25 ECTS from courses. Each course lasts approximately one week and is composed of classroom lessons, individual study and group works.

All courses are taught in English.

  • Schedule of courses 2021-2022
  • Schedule of courses 2022-2023
  • Schedule of courses 2023-2024

ORGANIZATION

Faculty Board

CAREER & PLACEMENTS

The Ph.D. programme aims to train professionals who are able to carry out high-quality research in the fields of Management, Economics and Industrial Engineering at universities or other research institutions. Ph.D. graduates from DRIG are also well equipped with distinctive skills and advanced knowledge to pursue a professional career in manufacturing and service companies, regulatory authorities and other public bodies.

In this framework, the following opportunities are open to those completing the Ph.D. programme:

  • Post doc, research fellows and young lecturers in Italian and foreign universities;
  • researchers and scholars of management, economics or industrial engineering in the research departments of public and private organisations;
  • highly qualified personnel in research and training institutions, with the role of providing a link between universities and the business world, or in technology transfer centres in Italy and abroad;
  • professionals in leading management and strategic consulting firms able to provide deep and advanced insight in areas of activity relating to the company itself;
  • high level professional roles in national (ministries, regulatory authorities, local public institutions) and international (EIB, IMF, World Bank, European Commission, European Central Bank) public institutions;
  • managerial roles in multinational companies with a strong focus on innovation;
  • entrepreneurs in contexts characterized by a high level of innovation.

Support actions for placement are provided with the purpose of sharing experiences, services and information through a number of initiatives fitting the different types of career opportunities. Amongst the actions, the “Placement programme for PhD candidates” is the programme offered by the Career Service, in cooperation with the PhD school of Politecnico di Milano. 

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Top 20 Affordable Online PhD in Engineering Management Degrees 2024

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Online PhD in Engineering Management

In this article, we profile the top 20 online doctorate in engineering management degree programs.

According to the Bureau of Labor Statistics (BLS), employment of engineering managers is projected to grow two percent through the year 2031. The growth rate is slower than the average growth rate for all other occupations. Still, as industries thrive and companies grow, engineering managers with adequate experience and advanced education will likely be needed. To accommodate anticipated growth, online doctorate in engineering management options from top-ranked colleges and universities are available.

Featured Programs

Top 20 Affordable Online PhD in Engineering Management Methodology

We looked at approximately 60 colleges and universities listed by the National Center for Educational Statistics (NCES) College Navigator. These are schools that offered at least one online doctorate in engineering management degree, or a closely related program. From our original pool of schools, we narrowed our search by including only schools that were accredited. We applied the following criteria to determine our top 20 programs: Regional or national accreditation, online or hybrid/blended degree completion pathways, and rankings from a major publication like U.S. News and World Report. We then listed the programs and schools according to raw affordability based on graduate tuition/fees. Please note that some PhD programs offer stipends and outside resources to offset the cost of the program.

Below is our list of the top 20 affordable online doctorate in engineering management programs.

#20 – George Washington University

Online doctor of engineering – engineering management, washington, district of columbia.

George Washington University - logo

George Washington University offers a type of PhD engineering management known as the D.Eng. The Doctor of Engineering degree has the option of deeper study in the field of engineering management. The program is intended for working adults. Classes are scheduled on Saturdays and taught online via distance learning technologies. Also, the 45 credit hour program is divided into classes and research for the culminating research project. Approximately 15 credit hours make up the research component of the doctoral program. U.S. News and World Report ranks George Washington University #63 in best national universities and #68 in best value schools. The institution is also accredited and recognized among top research schools. Financial aid may be available for eligible students.

Graduate Tuition/Fees : $32,850

#19 – Worcester Polytechnic Institute

Phd in systems engineering, worcester, massachusetts.

Worcester Polytechnic Institute - logo

Worcester Polytechnic Institute offers doctoral engineering management online programs. The PhD in systems engineering is a blended program designed to support part-time students. Off-campus professionals with full-time jobs enjoy the hybrid format of the program. Most courses are delivered online, and research seminars may be taken in a virtual classroom. To be admitted to the program, applicants must provide official transcripts and three letters of recommendation. A statement of purpose and statement of relevant and related work experience is also required. GRE scores within the last three years are recommended but not required. U.S. News and World Report ranks Worcester Polytechnic #59 in best national universities.

Graduate Tuition/Fees : $28,980

#18 – Western New England University

Phd engineering management, springfield, massachusetts.

Western New England University - logo

Western New England University offers a PhD engineering management online. This program offers full-time and part-time completion pathways. The program is designed for working professionals who want to develop research skills related to the improvement of design and project management within complex human and technological systems. A mix of online courses and research components are required to fulfill credit hours. Admission is on a rolling basis, and applications are reviewed after the middle of January. Candidates should hold a master’s or bachelor’s in engineering or closely related discipline. Strong GPA and GRE scores are also required. U.S. News and World Report ranks the institution #68 in best regional universities in the North and #44 in best value schools.

Graduate Tuition/Fees : $26,640

#17 – University of Bridgeport

Phd in technology management, bridgeport, connecticut.

University of Bridgeport - logo

One of the top engineering management PhD online programs on our list comes from University of Bridgeport. The affordable online doctorate in technology management offers both full-time and part-time completion pathways. The program is designed specifically for working students or busy professionals. Two concentration areas are also offered so that students may delve deeper into the study of a particular focus. These concentrations include new technology venture creation and emerging technologies. Admission to the PhD program demands a master’s and bachelor’s in engineering, computer science, or related field. Also, three years of real-world industry work experience is required for online students. U.S. News and World Report ranks the school among the top 150 best regional universities in the North.

Graduate Tuition/Fees : $19,096

#16 – Michigan Technological University

Phd in mechanical engineering, houghton, michigan.

Michigan Technological University - logo

One of the top programs on our list is the PhD in mechanical engineering at Michigan Technological University. The program is offered as a distance-learning degree. Thus, online courses and research components will require virtual meetings with mentors and professors. Some of the online courses include:

  • Dynamic Measurement Signal Analysis
  • Linear Systems Theory and Design
  • Micro-Manufacturing Process
  • Project Management

Depending on the length of research a candidate takes, the degree may be completed in as little as three years or up to eight. There is an eight-year limit on completing the PhD. U.S. News and World Report ranks Michigan Technological University #136 in best national universities and #121 in best value schools.

Graduate Tuition/Fees : $22,725

#15 – Northcentral University

Doctor of engineering management, san diego, california.

Northcentral University - Top 20 Online PhD Engineering Management

Northcentral University offers affordable online doctoral engineering programs. This includes the PhD offering in engineering management online. This 60 credit hour program is designed to develop advanced knowledge in technology and innovation. Weekly course starts, no scheduled lecture hours, and the ability to schedule management of engineering courses around personal and professional obligations make the program flexible for working students. Students must complete a total of 60 credit hours and 20 courses. The estimated time to complete the PhD in engineering management is 50 months. Northcentral is accredited to offer the doctoral degree program in engineering. Also, U.S. News and World Report recognizes the school among the top unranked national universities. Several of the school’s online graduate programs have received rankings.

Graduate Tuition/Fees : $11,064

#14 – University of Maryland

Phd in reliability engineering, college park, maryland.

University of Maryland - logo

One of the top engineering management programs on our list is the reliability engineering PhD program at University of Maryland. Distance-delivered courses and part-time enrollment options make the PhD program flexible. This means it’s well-suited for working students with real-world experience. Coursework and dissertation must be completed to graduate. Students must defend their doctoral dissertation orally in English. The school is ranked and accredited to offer the doctoral degree program in engineering. In fact, U.S. News and World Report ranks University of Maryland #63 in best national universities and #108 in best value schools. Several of the institution’s online graduate programs have also received top rankings.

Graduate Tuition/Fees : $15,360

#13 – The University of Tennessee

Phd in industrial engineering and systems engineering – engineering management, knoxville, tennessee.

The University of Tennessee - logo

The University of Tennessee offers a Doctor of Philosophy in engineering management online. Doctoral degree students earn a PhD in industrial engineering and systems engineering. And they may elect to delve deeper with the engineering management concentration option. The concentration has an extra admission requirement–Students must have two years of relevant, real-world work experience as a practicing engineer or scientist. The concentration is fully supported off-campus using distance teaching methods. Admission to the PhD program requires a strong undergraduate background. All applicants must also submit GRE scores. The institution is ranked and accredited. In fact, U.S. News and World Report ranks University of Tennessee #115 in best national universities and #100 in best value schools.

Graduate Tuition/Fees : $11,468

#12 – Missouri University of Science & Technology

Doctor of philosophy in systems management, rollo, missouri.

Missouri University of Science & Technology - logo

One of the top doctoral engineering programs on our list is the PhD in systems engineering at Missouri University of Science & Technology. The doctoral program consists of 60 credit hours of core courses beyond the MS degree in systems engineering or 90 credit hours after the BS degree. The program requires six core courses in theory and application of quality systems engineering and management. Also, several areas of specialization may be elected to customize degree programs. Engineering management along with several other options are available. To be admitted to the program, students are required to have a bachelor’s in engineering. Also, a strong undergraduate GPA and GRE scores are necessary for admission. U.S. News and World Report ranks the institution #157 in best national universities.

Graduate Tuition/Fees : $10,452

#11 – Capitol Technology University

Doctor of philosophy in technology, laurel, maryland.

Capitol Technology University -logo

One of the best affordable online doctoral engineering programs on our list comes from Capital Technology University. The PhD in technology prepares students to take on roles as leaders in specific technological fields. Examples include engineering or research. Several pathways allow students to enter the program but do require a master’s degree. Coursework and dissertation research make up the bulk of the program. Students enter the program with a research idea. Students work closely with a research committee to further develop their research proposal. The program is well-suited for individuals wanting to focus more on engineering and technology leadership than mechanical systems. Still, research may be curtailed to fit any interest area. U.S. News and World Report ranks Capitol Technology University’s engineering programs #193-#205.

Graduate Tuition/Fees : $11,340

#10 – Bowling Green State University

Bowling green, ohio.

Bowling Green State University - logo

One alternative to affordable online doctoral engineering programs is the PhD in technology management from Bowling Green State University. The program serves students and professionals seeking higher level positions within a technology-based organization. Many students work full-time while attending school to complete their degree programs as well as their dissertation research. Admission requirements include a master’s degree in a relevant field from an accredited college or university and a GPA of 3.5. GRE or GMAT scores. Five letters of recommendation are also required. U.S. News and World Report ranks Bowling Green #215 in best national universities and #121 in top public schools. Also, several online graduate programs have received top 50 and top 100 rankings.

Graduate Tuition/Fees : $8,017

#9 – University of North Dakota

Phd in engineering, grand forks, north dakota.

University of North Dakota - logo

The University of North Dakota offers several PhD engineering management and engineering programs. Depending on which area of engineering individuals desire, the school offers affordable online doctoral programs in:

  • Biomedical Engineering
  • Chemical Engineering
  • Energy Engineering
  • Environmental Engineering
  • Petroleum Engineering
  • Industrial Engineering

Programs in the field of engineering are not fully online, though many do offer online courses in conjunction with on-campus meetings and seminars. Some of the doctorate in engineering programs do offer a fully online curriculum. Most PhD programs take between three and five years to complete all credit hours. U.S. News and World Report ranks University of North Dakota #205 in best national universities and #112 in top public schools.

Graduate Tuition/Fees : $11,503

#8 – University of Maine

Phd in biomedical engineering, orono, maine.

University of Maine - logo

University of Maine offers a PhD in biomedical engineering. This program appeals to individuals interested in a PhD in engineering management online. The program is blended, though classes may be taken online. Students must live in Maine to conduct research at one of the five partnering institutions. Program requirements must be fulfilled. These requirements include research methods, publication, presentation of research, and attendance at the GSBSE Annual Meeting. Admission requires an earned master’s degree, strong academic record, and graduate test scores. U.S. News and World Report ranks University of Maine #177 in best national universities and #97 in top public schools.

Graduate Tuition/Fees : $9,738

#7 – Colorado State University

Fort collins, colorado.

Colorado State University - logo

Colorado State University is home to a multi-disciplinary program. This is a program that may appeal to those interested in an engineering management PhD online degree. The program is for working professionals with engineering and technology experience. In fact, most of the enrolled students come from senior management and top-level executive positions. The program provides a flexible study format with online classes. Curriculum topics include:

  • Dynamics of Complex Engineering Systems
  • Engineering Risk Analysis
  • Information Technology and Project Management
  • Systems Engineering Processes

U.S. News and World Report ranks CSU #140 in best national universities and #141 in best value schools.

Graduate Tuition/Fees : $10,834

#6 –Removed by editor.

#5 – texas tech university, phd in systems and engineering management, lubbock, texas.

Texas Tech University - logo

Texas Tech University’s engineering management online consists of 72 credit hours. The program requires an earned master’s for admission. Other admission requirements include official transcripts, GRE scores, and three letters of recommendation. Prospective students should have also completed three credit hours of college level physics and three levels of calculus. Classes are delivered in a blended format with a mixture of online and on-campus meetings. Courses for the doctorate degree in systems and engineering management include:

  • Advanced Theoretical Studies in Systems Management
  • Decision Theory and Management Science
  • Research Methods in Science and Technology

U.S. News and World Report ranks Texas Tech University #187 in best national universities. Also, the doctoral engineering programs, including those in the management of engineering and technology, rank #87 in the country.

Graduate Tuition/Fees : $6,956

#4 – North Carolina A & T State University

Greensboro, north carolina.

North Carolina A & T State University - logo

North Carolina A&T State University offers doctorate in engineering management programs and specializations. One option includes the PhD in technology management. This program has five specializations. These specializations include:

  • Construction Management
  • Digital Communications
  • Human Resource Development and Training
  • Manufacturing Systems
  • Quality Systems

Admission to the program dictates an earned bachelor’s from an accredited institution with a strong undergraduate GPA of at least 3.0. Five letters of recommendation and GRE scores of at least 500 are also required. U.S. News and World Report ranks the school #230-#301 in best national universities. Also, the engineering programs rank #146 in the country.

Graduate Tuition/Fees : $4,745

#3 – Indiana State University

Terre haute, indiana.

Indiana State University - logo

Indiana State University offers a variety of affordable online doctoral engineering programs. The PhD in technology management is an online doctoral program for students who would like to prepare for positions of leadership in the public and private sectors. The PhD consists of 66 credit hours that require a study concentration in one of five areas. Popular concentrations include:

  • Industrial Training

Depending on program requirements, students may enroll part-time and complete their degree in just over four years. U.S. News and World Report ranks Indiana State University #230-#301 in best national universities. Also, several online graduate programs have received top rankings.

Graduate Tuition/Fees : $7,776

#2 – East Carolina University

Greenville, north carolina.

East Carolina University - logo

East Carolina offers a technology management program. This program may appeal to those interested in an PhD engineering management degree. The program is considered an internet-enabled PhD, which allows students to take classes online. Five technical specializations are currently available. These specializations include:

  • Digital Communications Systems

Students are required to identify a home university (one of five individual partners). This is based on their technical specialization and geographic location. ECU is an accredited institution that has also received rankings from major publications. In fact, U.S. News and World Report ranks ECU #194 in best national universities. The engineering programs rank #82 in the country.

Graduate Tuition : $4,749

#1 – University of Central Missouri

Warrensburg, missouri.

University of Central Missouri -logo

The most affordable online doctorate degree in engineering management or technology management program on our list is offered by University of Central Missouri. This web-based doctoral program consists of at least 87 credit hours of coursework. Thirty of the required credit hours comes from the earned master’s degree. Several specialization options are available so that students may tailor their degree. These specializations include:

  • Human Resource Development
  • Industrial Training, Manufacturing systems, and Quality Systems

The engineering and technology program is fully accredited. Also, U.S. News and World Report ranks the institution #81 in best regional universities in the Midwest and #17 in top public schools.

Graduate Tuition : $7,836

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Frequently Asked Questions

What can i do with an phd engineering management.

Technological challenges are impacting the human race on a global level. Thus, there is a need for organizations, companies, and businesses to integrate tech skills to solve difficult problems. Experts in engineering can help. Earning an PhD engineering management will provide you with the skills necessary to lead and innovate in a constantly changing field.

Doctorate in engineering management degrees prepare students for various careers. These include positions in science, engineering, business, and technology. If you are interested in technology leadership in some capacity, the program offers extensive management and leadership courses applicable to the field. You will take courses that prepare you for diverse positions. These include industrial engineering management, high technology management, R&D management, and technology entrepreneurship in start-up companies.

Depending on the work environment, common job duties of an engineering manager may differ. Some of these tasks include coordinating, directing, and managing activities in engineering firms and companies. They often manage teams of engineers and oversee projects from start to finish.

Most engineering management professionals work in offices within organizations. Still, some may be found in research laboratories and industrial production plants. Depending on the industry, some managers operate on building and construction sites.

Engineering managers work full time, though overtime is often a part of the job. To meet critical deadlines, managers may be called on to work outside of normal work hours.

How much money can I make with a doctorate in engineering management?

The United States Department of Labor’s Bureau of Labor Statistics – Occupational Outlook Handbook reports the median annual wage for engineering management professionals in May 2021 was $152,350. BLS indicates that the lowest 10 percent of engineering managers earned less than $99,350 while the highest 10 percent earned over $208,000.

The annual wage varied with geographic location and industry. This means a manager working in the scientific research and development services field earned a higher wage than an engineering manager working in government or manufacturing.

Aside from BLS, we examined earnings for engineering managers listed by PayScale–a global compensation research company that collects data on salaries. PayScale reported the average pay for a manager as of October 2022 was $119,225.

PayScale reported the most significant impact on pay was experience. The more experience a manager has, the higher the earnings. Entry-level engineering managers with less than five years of work experience earned a total compensation of approximately $109,000. Compensation included salary, bonuses, and overtime pay. Experienced engineering managers with ten to twenty years of experience earned just under $125,000. Employers often view a doctorate degree in engineering management as representing significant experience. When negotiating salary, having a PhD might be helpful.

What is the career outlook for an individual with a doctorate in engineering management?

Since there are a limited number of management positions, jobs are highly desired and competition may be fierce. Candidates for engineering management positions can expect competition for job openings. Those with experience and education, such as a PhD in engineering management, should see the most opportunity for advancement.

How long does it take to earn an online doctorate in engineering management?

The average time spent in an online doctorate in engineering management program is four years. Program length varies depending on the school and format. Most programs on our list offer an online doctorate in engineering management in 36-48 months.

Completion time varies with enrollment. Students looking to earn a PhD in a compressed amount of time should evaluate the pros and cons of part-time versus full-time enrollment. Part-time programs offer flexibility, but classes are often extended. This lengthens the completion time. Many part-time programs on our list take up to six years to complete and allow even longer. Full-time enrollment allows students to take classes at a rigorous pace. Thus, they complete the program requirements at a quicker rate. Most full-time online doctorate in engineering management offerings take about three to four years to complete.

The amount of research required by the program also impacts the length of time it takes to earn the degree. Thesis versus non-thesis programs vary by length of study. Most thesis programs take longer to finish than non-thesis programs. Some of the online doctorate in engineering management degrees on our list offer a non-thesis pathway, which can cut time. In fact, non-thesis programs take an average of 12-18 months less than thesis programs.

How can I get into an online doctorate in engineering management program?

Admission requirements vary among online doctorate in engineering management schools. While some requirements are the same, top-ranked programs have unique criteria that may not be required by other programs. A master’s degree or bachelor’s degree in engineering from an accredited college or university is required across the board.

Admission boards examine an applicant’s academic and research potential. This is especially true for PhD admissions. To showcase academic promise, applicants must provide a clear picture of their academic experience. Admission boards will ask for official transcripts. In some cases, there are specific undergraduate GPA requirements. Many of the programs on our list demand a 3.0 undergraduate GPA or higher for an earned master’s degree.

GRE or GMAT scores are not required across the board, though many online doctorate in engineering management schools ask for scores no more than five years old. Some programs offer a range of satisfactory test scores, while others do not stipulate a required test score. Other programs will waive test scores if a candidate’s undergraduate GPA is exceptionally high.

Other admission requirements for online doctorate in engineering management students include letters of recommendation, writing samples, and statement of goals or purpose. Work or research experience may also be required.

  • National Center for Education Statistics: College Navigator
  • US Bureau of Labor Statistics: Occupational Outlook Handbook
  • US News & World Report: Best Colleges

Related Resources

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This concludes our list of the top 20 online PhD in engineering management programs.

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