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The laws of thermodynamics have wide ranging practical applications
in all branches of engineering.This invaluable textbook covers all
the subject matter in a typical undergraduate course in engineering
thermodynamics, and uses carefully chosen worked examples and
problems to expose students to diverse applications of
thermodynamics.This new edition has been revised and updated to
include two new chapters on thermodynamic property relations, and
the statistical interpretation of entropy. Problems with numerical
answers are included at the end of each chapter. As a guide,
instructors can use the examples and problems in tutorials, quizzes
and examinations.
The laws of thermodynamics have wide ranging practical applications
in all branches of engineering.This invaluable textbook covers all
the subject matter in a typical undergraduate course in engineering
thermodynamics, and uses carefully chosen worked examples and
problems to expose students to diverse applications of
thermodynamics.This new edition has been revised and updated to
include two new chapters on thermodynamic property relations, and
the statistical interpretation of entropy. Problems with numerical
answers are included at the end of each chapter. As a guide,
instructors can use the examples and problems in tutorials, quizzes
and examinations.
The book includes all the subject matter covered in a typical
undergraduate course in engineering thermodynamics. It includes 20
to 25 worked examples for each chapter, carefully chosen to expose
students to diverse applications of engineering thermodynamics.
Each worked example is designed to be representative of a class of
physical problems. At the end of each chapter, there are an
additional 10 to 15 problems for which numerical answers are
provided.
The book includes all the subject matter covered in a typical
undergraduate course in engineering thermodynamics. It includes 20
to 25 worked examples for each chapter, carefully chosen to expose
students to diverse applications of engineering thermodynamics.
Each worked example is designed to be representative of a class of
physical problems. At the end of each chapter, there are an
additional 10 to 15 problems for which numerical answers are
provided.
In this volume, engineering principles of renewable energy are
presented as extensions of the various subjects covered in regular
engineering courses. Topics include solar thermal and solar PV
power, wind power, energy storage, tidal power, wave power, and
ocean thermal energy, and hydroelectric, geothermal and biomass
systems.The comprehensive textbook brings the principles of
renewable energy engineering together in a single book equivalent
to that of a standard engineering title.A novel feature of this
unique reference is the 30 worked examples and problems highlighted
at the end of each chapter. Numerical answers are provided for all
the problems. Readers should be able to avoid the need to refer to
several books on individual energy sources to develop a course on
renewable energy.
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