Fundamentals of thermodynamics

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  • (bq) part 1 book "fundamentals of thermodynamics" has contents: some introductory comments, some concepts and definitions, properties of a pure substance, work and heat, the first law of thermodynamics, first law analysis for a control volume, the second law of thermodynamics, entropy,... and other contents.

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  • (bq) part 2 book "fundamentals of thermodynamics" has contents: power and refrigeration systems - with phase change, power and refrigeration systems—gaseous working fluids, gas mixtures, thermodynamic relations, chemical reactions, introduction to phase and chemical equilibrium, compressible flow.

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  • (bq) part 2 book "fundamentals of engineering thermodynamics" has contents: refrigeration and heat pump systems; thermodynamic relations; ideal gas mixtures and psychrometrics applications; reacting mixtures and combustion; chemical and phase equilibrium.

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  • Lecture Physical chemistry in brief has contents: Basic terms, state behaviour, fundamentals of thermodynamics, application of thermodynamics, thermodynamics of homogeneous mixtures, phase equilibria, chemical equilibrium, transport processes,...and other contents.

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  • (bq) part 1 book "fundamentals of engineering thermodynamics" has contents: getting started - introductory concepts and definitions; energy and the first law of thermodynamics; evaluating properties; control volume analysis using energy; control volume analysis using energy; using entropy; exergy analysis; vapor power systems; gas power systems.

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  • (bq) part 1 book "physical chemistry" has contents: zeroth law of thermodynamics and equations of state, first law of thermodynamics, fundamental equations of thermodynamics, phase equilibrium, chemical equilibrium, electrochemical equilibrium, atomic structure, molecular electronic structure,...and other contents.

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  • One reason why the study of thermodynamics is so valuable to students of chemistry and chemical engineering is that it is a theory which can be developed in its entirety, without gaps in the argument, on the basis of only a moderate knowledge of mathematics. It is therefore a self-contained logical structure, and much benefit--and incidentally much pleasure-may be obtained from its study. Another reason is that it is one of the few branches of physics or chemistry which is largely independent of any assumptions concerning the nature of the fundamental particles.

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  • Chapter 12 - Thermodynamic property relations. This chapter develop fundamental relations between commonly encountered thermodynamic properties and express the properties that cannot be measured directly in terms of easily measurable properties. This chapter also review and use partial derivatives in the development of thermodynamic property relations.

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  • The paper presents first the fundamentals of the learning strategy adopted, intended to develop teamwork abilities in the students. It then describes the context and challenges faced up in the case studies, as well as the essentials of the learning activities proposed. Finally, the paper discusses the student’s achievement and perception.

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  • The Physical Chemistry In Brief offers a digest of all major formulas, terms and definitions needed for an understanding of the subject. They are illustrated by schematic figures, simple worked-out examples, and a short accompanying text. The concept of the book makes it different from common university or physical chemistry textbooks. In terms of contents, the Physical Chemistry In Brief embraces the fundamental course in physical chemistry as taught at the Institute of Chemical Technology, Prague, i.e.

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  • Thermodynamics is both a branch of physics and an engineering science. The scientist is normally interested in gaining a fundamental understanding of the physical and chemical behavior of fixed, quiescent quantities of matter and uses the principles of thermodynamics to relate the properties of matter. Engineers are generally interested in studying systems and how they interact with their surroundings. To facilitate this, engineers have extended the subject of thermodynamics to the study of systems through which matter flows.......

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  • Thermodynamics is an aspect of physics which deals with the energy characteristics of materials and with the behavior of systems undergoing changes in system energy levels. The field of thermodynamics is quite broad as well as deep, and can vary in presentation and in application from relatively simple to very complex. For the purposes of this book, a relatively simple presentation is adequate.

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  • This book presents the selection of various high level contributions involving thermodynamics. The book goes from the fundamentals up to several applications in different scientific fields. The content of the book has been classified in six sections: Classical Thermodynamics, Statistical Thermodynamics, Property Prediction in Thermodynamics, Material and Products, Non Equilibrium and Thermodynamics in Diverse Areas. The classification of the book aims to provide to the reader the facility of finding the desired topic included in the book.

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  • The sub-series Ternary Alloy Systems of the Landolt-Börnstein New Series provides reliable and comprehensive descriptions of the materials constitution, based on critical intellectual evaluations of all data available at the time and it critically weights the different findings, also with respect to their compatibility with today’s edge binary phase diagrams. Selected are ternary systems of importance to alloy development and systems which gained in the recent years otherwise scientific interest.

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  • The engineering field requires an understanding of core concepts including mechanics, kinematics, thermodynamics, materials science, structural analysis, and electricity. Mechanical engineers use these core principles along with tools like computer-aided engineering and product lifecycle management to design and analyze manufacturing plants, industrial equipment and machinery, heating and cooling systems, transport systems, aircraft, watercraft, robotics, medical devices, and others.

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  • (bq) part 2 book "problems and solutions in mechanical engineering" has contents: fundamental concepts, definitions and zeroth law, second law of thermodynamics, properties of steam and thermodynamics cycle, non concurrent force system, concurrent force system,... and other contents.

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  • (bq) part 1 book "problems and solutions in mechanical engineering" has contents: application of friction - belt friction, laws of motion, beam, truss, simple stress and strain, compound stress and strain, pure bending of beam, torsion.

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  • the chapters are written in a clear, logically organized manner, and contain an abundance of realistic problems, examples, and illustrations to help students understand complex concepts. new ideas, terms, and symbols constantly challenge the readers to think and encourage them to apply this fundamental body of knowledge to the solution of practical problems. the comprehensive nature of this book makes it a useful reference both in graduate courses and for professional practice.

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  • (bq) part 1 book "electrochemical methods - fundamentals and applications" has contents: introduction and overview of electrode processes, potentials and thermodynamics of cells, kinetics of electrode reactions, mass transfer by migration and diffusion, basic potential step methods, potential sweep methods, polarography and pulse voltammetry,...and other contents.

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  • (bq) part 1 book "the crc handbook of thermal engineering" has contents: engineering thermodynamics (fundamentals, control volume applications, property relations and data, vapor and gas power cycles, guidelines for improving thermodynamic effectiveness, economic analysis of thermal systems,...), fluid mechanics, heat and mass transfer.

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