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With an expanded focus on critical thinking and problem solving, the new edition of Introductory Chemistry: Concepts and Critical Thinking prepares readers for success in introductory chemistry. Unlike other introductory chemistry texts, all materials âthe textbook, student solutions manual, laboratory manual, instructorâs manual and test item file â are written by the author and tightly integrated to work together most effectively. Math and problem solving are covered early in the text; Corwin builds reader confidence and ability through innovative pedagogy and technology formulated to meet the needs of todayâs learners.
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Charles H. Corwin has spent over 30 years teaching chemistry to over 12,000 students. He has taught general chemistry, organic chemistry, and quantitative analysis, but has focused primarily on introductory chemistry for the personal rewards it offers. Corwin was awarded his degrees from San Jose State University, where he was a member of Tau Delta Phi honor society. Early in his career, he was awarded a National Science Foundation grant to study instructional innovations at Grand Valley State University. Currently, he is a professor of chemistry at American River College, where he was recognized as Teacher of the Year in 1994. He is also the recipient of an Alumni Teaching award from Purdue University.
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Rheological Properties of the EP742-ID Alloy in the Context of Integrated Computational Materials Science and Engineering: Part II. Modeling the Compression Process of the Samples and Virtual Billets
- Physical Metallurgy and Heat Treatment
- Published: 24 May 2018
- Volume 59 , pages 173â180, ( 2018 )
Cite this article
- V. K. Nosov 1 ,
- S. A. Kononov 2 ,
- A. S. Perevozov 3 ,
- P. A. Nesterov 1 ,
- Yu. Yu. Shchugorev 1 &
- Yu. A. Gladkov 4 Â
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Part II of this work is devoted to a comparison of the results of modeling and experiment with the GuberâMises theoretical plasticity condition during axisymmetric upsetting the samples of the EP742-ID alloy with various ratios of initial diameters d 0 / h 0 . The influence of initial sizes on the deformation mode of model experimental samples and virtual billets is evaluated. The results of modeling the draft of cylindrical samples (Ă15 mm) and billets (Ă300 mm) of the EP742-ID heat-resistant nickel alloy with various ratios of initial homological sizes are presented and the selection of the average tension and equivalent deformation as internal factors determining the microstructure formation is substantiated. It is shown that the squeezing axial tension component in the sample center under conditions of the initial plastic deformation of 0.2% increases larger than by a factor of 1.5 with an increase in the d 0 / h 0 ratio. The experimental and calculated values of the conditional yield point, axial tension, and radial tension at a compression temperature of 1050°C depending on d 0 / h 0 are found. The influence of the degree of strain and the ratio of initial sizes on the distribution of the average tension and equivalent strain over the half-height radius of the meridional section of upsetted (experimental) samples (Ă15 mm) and virtual billets (Ă300 mm) is analyzed. General principles of forecasting the microstructure to solve the problems using software complexes of process modeling when developing the upsetting modes of discs made of heat-resistant nickel alloys are described. Attention is paid to the fact that the modeling methods should be substantiated theoretically and confirmed experimentally.
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Original Russian Text © V.K. Nosov, S.A. Kononov, A.S. Perevozov, P.A. Nesterov, Yu.Yu. Shchugorev, Yu.A. Gladkov, 2018, published in Izvestiya Vysshikh Uchebnykh Zavedenii, Tsvetnaya Metallurgiya, 2018, No. 1, pp. 43â52.
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Nosov, V.K., Kononov, S.A., Perevozov, A.S. et al. Rheological Properties of the EP742-ID Alloy in the Context of Integrated Computational Materials Science and Engineering: Part II. Modeling the Compression Process of the Samples and Virtual Billets. Russ. J. Non-ferrous Metals 59 , 173â180 (2018). https://doi.org/10.3103/S1067821218020086
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Received : 04 March 2017
Accepted : 11 July 2017
Published : 24 May 2018
Issue Date : March 2018
DOI : https://doi.org/10.3103/S1067821218020086
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Title : Active carbons as nanoporous materials for solving of environmental problems
However, up to now, the main carriers of catalytic additives have been mineral sorbents: silica gels, alumogels. This is obviously due to the fact that they consist of pure homogeneous components SiO2 and Al2O3, respectively. It is generally known that impurities, especially the ash elements, are catalytic poisons that reduce the effectiveness of the catalyst. Therefore, carbon sorbents with 5-15% by weight of ash elements in their composition are not used in the above mentioned technologies. However, in such an important field as a gas-mask technique, carbon sorbents (active carbons) are carriers of catalytic additives, providing effective protection of a person against any types of potent poisonous substances (PPS). In ESPE “JSC "Neorganika" there has been developed the technology of unique ashless spherical carbon carrier-catalysts by the method of liquid forming of furfural copolymers with subsequent gas-vapor activation, brand PAC. Active carbons PAC have 100% qualitative characteristics of the three main properties of carbon sorbents: strength - 100%, the proportion of sorbing pores in the pore space – 100%, purity - 100% (ash content is close to zero). A particularly outstanding feature of active PAC carbons is their uniquely high mechanical compressive strength of 740 ± 40 MPa, which is 3-7 times larger than that of such materials as granite, quartzite, electric coal, and is comparable to the value for cast iron - 400-1000 MPa. This allows the PAC to operate under severe conditions in moving and fluidized beds. Obviously, it is time to actively develop catalysts based on PAC sorbents for oil refining, petrochemicals, gas processing and various technologies of organic synthesis.
Victor M. Mukhin was born in 1946 in the town of Orsk, Russia. In 1970 he graduated the Technological Institute in Leningrad. Victor M. Mukhin was directed to work to the scientific-industrial organization "Neorganika" (Elektrostal, Moscow region) where he is working during 47 years, at present as the head of the laboratory of carbon sorbents. Victor M. Mukhin defended a Ph. D. thesis and a doctoral thesis at the Mendeleev University of Chemical Technology of Russia (in 1979 and 1997 accordingly). Professor of Mendeleev University of Chemical Technology of Russia. Scientific interests: production, investigation and application of active carbons, technological and ecological carbon-adsorptive processes, environmental protection, production of ecologically clean food.
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Part II of this work is devoted to a comparison of the results of modeling and experiment with the Guber-Mises theoretical plasticity condition during axisymmetric upsetting the samples of the EP742-ID alloy with various ratios of initial diameters d0/h0. The influence of initial sizes on the deformation mode of model experimental samples and virtual billets is evaluated. The results of ...
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