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- 000 03061cam a2200397 i 4500
- 008 130411s2014 enka sb 001 0 eng
- 040 __ |a DLC |b eng |c DLC |e rda |d YDX |d OCLCO |d BTCTA |d OCLCF |d YDXCP |d UKMGB |d STF |d OCLCO |d IUL |d YUS |d SCT
- 050 00 |a QD504 |b .D423 2014
- 082 00 |a 621.402/1 |2 23
- 099 __ |a CAL 022014075634
- 100 1_ |a De Pablo, Juan J., |e author.
- 245 10 |a Molecular engineering thermodynamics / |c Juan J. de Pablo, University of Chicago, Jay D. Schieber, Illinois Institute of Technology.
- 264 _1 |a Cambridge : |b Cambridge University Press, |c 2014.
- 300 __ |a 1 online resource (xxiii, 480 pages) : |b illustrations
- 336 __ |a text |b txt |2 rdacontent
- 337 __ |a computer |b c |2 rdamedia
- 338 __ |a online resource |b cr |2 rdacarrier
- 490 0_ |a Cambridge series in chemical engineering
- 500 __ |a Description based on print version record.
- 504 __ |a Includes bibliographical references (pages 470-476) and index.
- 505 0_ |a 1. Introduction -- 2. The postulates of thermodynamics -- 3. Generalized thermodynamic potentials -- 4. First applications of thermodynamics -- 5. Application to process design: flow systems -- 6. Statistical mechanics -- 7. Molecular interactions -- 8. Fugacity and vapor-liquid equilibrium -- 9. Activity and equilibrium -- 10. Reaction equilibrium -- 11. Thermodynamics of polymers -- 12. Thermodynamics of surfaces.
- 520 __ |a "Building up gradually from first principles, this unique introduction to modern thermodynamics integrates classical, statistical and molecular approaches and is especially designed to support students studying chemical and biochemical engineering. In addition to covering traditional problems in engineering thermodynamics in the context of biology and materials chemistry, students are also introduced to the thermodynamics of DNA, proteins, polymers and surfaces. It includes over 80 detailed worked examples, covering a broad range of scenarios such as fuel cell efficiency, DNA/protein binding, semiconductor manufacturing and polymer foaming, emphasising the practical real-world applications of thermodynamic principles; more than 300 carefully tailored homework problems, designed to stretch and extend students' understanding of key topics, accompanied by an online solution manual for instructors; and all the necessary mathematical background, plus resources summarising commonly used symbols, useful equations of state, microscopic balances for open systems, and links to useful online tools and datasets"--Provided by publisher.
- 650 _0 |a Thermodynamics.
- 650 _0 |a Chemical engineering.
- 650 _0 |a Molecular dynamics.
- 700 1_ |a Schieber, Jay D., |e author.
- 856 4_ |u http://www.itextbook.cn/f/book/bookDetail?bookId=19cd81c852cb41f494f8ea6321d803af |z An electronic book accessible through the World Wide Web; click to view