Workbook to Accompany Physics for Students of Science and Engineering

Author: Tanner   J  

Publisher: Elsevier Science‎

Publication year: 2012

E-ISBN: 9780323158473

P-ISBN(Paperback): 9780126633825

P-ISBN(Hardback):  9780126633825

Subject: O4 Physics

Language: ENG

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Description

Workbook to Accompany: Physics for Students of Science and Engineering is 25-chapter workbook designed to accompany the Physics for Students of Science and Engineering textbook. This workbook is a collection of question and problems that are representative of the topics covered in the textbook. The format of this workbook is based on individual chapters of the textbook.
The questions and problems associated with each chapter begin with a one-page review of the definitions, units, and simple relationships appropriate to that chapter. Each review, in the form of questions and one-step problems, is followed by more comprehensive problems, formatted one to a page. Each problem is stated at the top of a page, and the student is provided space to execute each element of the problem-solving procedure. A detailed solution to each problem is presented in the same form, such as in the format of the problem solving procedure, on the reverse side of the page. The solution page often includes comments and suggestions appropriate to the specific type of problem being considered.
The opening chapters include discussions on particle kinematics and dynamics; applications of Newton’s laws; and work, power, and energy. The subsequent chapters explore the concepts of momentum, collisions, rotational motion, oscillations, mechanics of fluids, heat, and thermodynamics. Other chapters examine the principles of electric charge, electric fields, electric potential, capacitance, current, resis

Chapter

Front Cover

pp.:  1 – 4

Copyright Page

pp.:  5 – 8

PREFACE

pp.:  6 – 10

Table of Contents

pp.:  8 – 6

CHAPTER 1. INTRODUCTION

pp.:  10 – 18

CHAPTER 2. PARTICLE KINEMATICS

pp.:  18 – 32

CHAPTER 3. PARTICLE DYNAMICS

pp.:  32 – 42

CHAPTER 4. APPLICATIONS OF NEWTON'S LAWS

pp.:  42 – 54

CHAPTER 5. WORK, POWER, AND ENERGY

pp.:  54 – 66

CHAPTER 6. MOMENTUM AND COLLISIONS

pp.:  66 – 78

CHAPTER 7. ROTATIONAL HOTION

pp.:  78 – 90

CHAPTER 8. OSCILLATIONS

pp.:  90 – 100

CHAPTER 9. MECHANICS OF FLUIDS

pp.:  100 – 110

CHAPTER 10. HEAT AND THERMODYNAMICS

pp.:  110 – 122

CHAPTER 11. ELECTRIC CHARGE AND ELECTRIC FIELDS

pp.:  122 – 132

CHAPTER 12. CALCULATION OF ELECTRIC FIELDS

pp.:  132 – 142

CHAPTER 13. ELECTRIC POTENTIAL

pp.:  142 – 154

CHAPTER 14. CAPACITANCE, CURRENT, AND RESISTANCE

pp.:  154 – 166

CHAPTER 15. DIRECT-CURRENT CIRCUITS

pp.:  166 – 178

CHAPTER 16. MAGNETIC FIELDS I

pp.:  178 – 190

CHAPTER 17. MAGNETIC FIELDS II

pp.:  190 – 200

CHAPTER 18. ELECTROMAGNETIC OSCILLATONS

pp.:  200 – 208

CHAPTER 19. WAVE MOTION AND SOUND

pp.:  208 – 218

CHAPTER 20. GEOMETRIC OPTICS

pp.:  218 – 228

CHAPTER 21. PHYSICAL OPTICS

pp.:  228 – 236

CHAPTER 22. SPECIAL RELATIVITY

pp.:  236 – 246

CHAPTER 23. EARLY QUANTUM PHYSICS

pp.:  246 – 254

CHAPTER 24. TOPICS IN QUANTUM PHYSICS

pp.:  254 – 262

CHAPTER 25. INTRODUCTION TO WAVE MECHANICS

pp.:  262 – 273

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