This book presents concepts needed to define single- and multi-component systems, starting with the Gibbs function. It helps readers derive concepts of entropy and temperature and the development of material properties of pure substances.
This book presents concepts needed to define single- and multi-component systems, starting with the Gibbs function. It helps readers derive concepts of entropy and temperature and the development of material properties of pure substances.
John Newman is Charles W. Tobias Chair of Electrochemistry (emeritus), Department of Chemical Engineering, UC Berkeley. He was also a senior scientist and principal investigator at the Energy Technologies Area (ETA), Lawrence Berkeley National Laboratory (LBNL), Berkeley, California, USA. His current research focuses on the analysis and design of electrochemical systems, with batteries, fuel cells, turbulence, and renewable energy receiving the most attention. Vincent Battaglia is a research scientist at LBNL, where he heads the Energy Storage Group of the ETA. He received his PhD in chemical engineering from UC Berkeley with an emphasis in electrochemical engineering. He specializes in battery design, fabrication, and testing, and his current research focuses on the science of electrode formulation as it relates to manufacturing and performance.
Inhaltsangabe
Thermodynamics. The Concept of Temperature. PVT Properties of Gases. Conservation of Energy. Thermal Properties of Gases. The Second Law of Thermodynamics. Thermodynamic Relationships for PVT Systems Entropy, Irreversibility, Randomness, and Natural Philosophy. The Virial Equation. Surface Systems. Phase Transition and Thermodynamic Diagrams. Work Processes and Cycles. Refrigeration and heat pumps. Mixtures. PVT Properties of Gas Mixtures. Thermodynamic Relationships. Ideal-Gas Mixtures. The Fugacity Coefficient. Gas-Phase Reactions. Dilute Solutions. Electrolytic Solutions. Liquid Mixtures.
Thermodynamics. The Concept of Temperature. PVT Properties of Gases. Conservation of Energy. Thermal Properties of Gases. The Second Law of Thermodynamics. Thermodynamic Relationships for PVT Systems Entropy, Irreversibility, Randomness, and Natural Philosophy. The Virial Equation. Surface Systems. Phase Transition and Thermodynamic Diagrams. Work Processes and Cycles. Refrigeration and heat pumps. Mixtures. PVT Properties of Gas Mixtures. Thermodynamic Relationships. Ideal-Gas Mixtures. The Fugacity Coefficient. Gas-Phase Reactions. Dilute Solutions. Electrolytic Solutions. Liquid Mixtures.
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