<b>A Practical, Up-to-Date Introduction to Applied Thermodynamics, Including Coverage of Process Simulation Models and an Introduction to Biological Systems</b> <p style="margin:0px;"> </p> <p style="margin:0px;"><b><i>Introductory Chemical Engineering Thermodynamics, Second Edition,</i></b> helps readers master the fundamentals of applied thermodynamics as practiced today: with extensive development of molecular perspectives that enables adaptation to fields including biological systems, environmental applications, and nanotechnology. This text is distinctive in making molecular perspectives accessible at the introductory level and connecting properties with practical implications.</p> <p style="margin:0px;"> </p> <p style="margin:0px;">Features of the second edition include</p> <p style="margin:0px;"> </p> <ul> <li>Hierarchical instruction with increasing levels of detail: Content requiring deeper levels of theory is clearly delineated in separate sections and chapters</li> <li>Early introduction to the overall perspective of composite systems like distillation columns, reactive processes, and biological systems</li> <li>Learning objectives, problem-solving strategies for energy balances and phase equilibria, chapter summaries, and “important equations” for every chapter</li> <li>Extensive practical examples, especially coverage of non-ideal mixtures, which include water contamination via hydrocarbons, polymer blending/recycling, oxygenated fuels, hydrogen bonding, osmotic pressure, electrolyte solutions, zwitterions and biological molecules, and other contemporary issues</li> <li>Supporting software in formats for both MATLAB® and spreadsheets</li> <li>Online supplemental sections and resources including instructor slides, ConcepTests, coursecast videos, and other useful resources</li> </ul>
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<b>J. Richard Elliott</b> is Professor of Chemical Engineering at the University of Akron in Ohio. He has taught courses ranging from freshman tools to senior process design as well as thermodynamics at every level. He has worked with the NIST lab in Boulder and ChemStations in Houston. He holds a Ph.D. from Pennsylvania State University. <p style="margin:0px;"> </p> <p style="margin:0px;"><b>Carl T. Lira</b> is Associate Professor in the Department of Chemical Engineering and Materials Science at Michigan State University. He teaches thermodynamics at all levels, chemical kinetics, and material and energy balances. He has been recognized with the Amoco Excellence in Teaching Award and multiple presentations of the MSU Withrow Teaching Excellence Award. He holds a Ph.D. from the University of Illinois.</p>
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