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Fundamentals of Physics, Volume 1 (Chapters 1 - 20)

Fundamentals of Physics, Volume 1 (Chapters 1 - 20)

          
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About the Book

Fundamentals of Physics, 10th Edition, Volume 1 contains Chapters 1 - 20. Access to WileyPLUS is not included with this textbook. The 10th edition of Halliday, Resnick and Walkers Fundamentals of Physics provides the perfect solution for teaching a 2 or 3 semester calc-based physics course, providing instructors with a tool by which they can teach students how to effectively read scientific material, identify fundamental concepts, reason through scientific questions, and solve quantitative problems. The 10th edition builds upon previous editions by offering new features designed to better engage students and support critical thinking. These include NEW Video Illustrations that bring the subject matter to life, NEW Vector Drawing Questions that test student's conceptual understanding, and additional multimedia resources (videos and animations) that provide an alternative pathway through the material for those who struggle with reading scientific exposition.

Table of Contents:
1 Measurement 1 1-1 Measuring Things, Including Lengths 1 1-2 Time 5 1-3 Mass 6 Review & Summary 8 Problems 8 2 Motion Along a Straight Line 13 2-1 Position, Displacement, and Average Velocity 13 2-2 Instantaneous Velocity and Speed 18 2-3 Acceleration 20 2-4 Constant Acceleration 23 2-5 Free-Fall Acceleration 27 2-6 Graphical Integration in Motion Analysis 29 3 Vectors 40 3-1 Vectors and Their Components 40 3-2 Unit Vectors, Adding Vectors by Components 46 3-3 Multiplying Vectors 50 Review & Summary 55 Questions 56 Problems 57 4 Motion in Two and Three Dimensions 62 4-1 Position and Displacement 62 4-2 Average Velocity and Instantaneous Velocity 64 4-3 Average Acceleration and Instantaneous Acceleration 67 4-4 Projectile Motion 70 4-5 Uniform Circular Motion 76 4-6 Relative Motion in One Dimension 78 4-7 Relative Motion in Two Dimensions 80 Review & Summary 81 Questions 82 Problems 84 5 Force and Motion—I 94 5-1 Newton’s First and Second Laws 94 5-2 Some Particular Forces 102 5-3 Applying Newton’s Laws 106 Review & Summary 114 Questions 114 Problems 116 6 Force and Motion—II 124 6-1 Friction 124 6-2 The Drag Force and Terminal Speed 130 6-3 Uniform Circular Motion 133 Review & Summary 138 Questions 139 Problems 140 7 Kinetic Energy and Work 149 7-1 Kinetic Energy 149 7-2 Work and Kinetic Energy 151 7-3 Work Done by the Gravitational Force 155 7-4 Work Done by a Spring Force 159 7-5 Work Done by a General Variable Force 162 7-6 Power 166 Review & Summary 168 Questions 169 Problems 170 8 Potential Energy and Conservation of Energy 177 8-1 Potential Energy 177 8-2 Conservation of Mechanical Energy 184 8-3 Reading a Potential Energy Curve 187 8-4 Work Done On a System by an External Force 191 8-5 Conservation of Energy 195 Review & Summary 199 Questions 200 Problems 202 9 Center of Mass and Linear Momentum 214 9-1 Center of Mass 214 9-2 Newton’s Second Law for a System of Particles 220 9-3 Linear Momentum 224 9-4 Collision and Impulse 226 9-5 Conservation of Linear Momentum 230 9-6 Momentum and Kinetic Energy in Collisions 233 9-7 Elastic Collisions in One Dimension 237 9-8 Collisions in Two Dimensions 240 9-9 Systems with Varying Mass: A Rocket 241 Review & Summary 243 Questions 245 Problems 246 10 Rotation 257 10-1 Rotational Variables 257 10-2 Rotation with Constant Angular Acceleration 266 10-3 Relating the Linear and Angular Variables 268 10-4 Kinetic Energy of Rotation 271 10-5 Calculating the Rotational Inertia 273 10-6 Torque 277 10-7 Newton’s Second Law for Rotation 279 10-8 Work and Rotational Kinetic Energy 282 Review & Summary 285 Questions 286 Problems 287 11 Rolling, Torque, and Angular Momentum 295 11-1 Rolling as Translation and Rotation Combined 295 11-2 Forces and Kinetic Energy of Rolling 298 11-3 The Yo-Yo 301 11-4 Torque Revisited 302 11-5 Angular Momentum 305 11-6 Newton’s Second Law in Angular Form 307 11-7 Angular Momentum of a Rigid Body 310 11-8 Conservation of Angular Momentum 312 11-9 Precession of a Gyroscope 317 Review & Summary 318 Questions 319 Problems 320 12 Equilibrium and Elasticity 327 12-1 Equilibrium 327 12-2 Some Examples of Static Equilibrium 332 12-3 Elasticity 338 Review & Summary 343 Questions 343 Problems 345 13 Gravitation 354 13-1 Newton’s Law of Gravitation 354 13-2 Gravitation and the Principle of Superposition 357 13-3 Gravitation Near Earth’s Surface 359 13-4 Gravitation Inside Earth 362 13-5 Gravitational Potential Energy 364 13-6 Planets and Satellites: Kepler’s Laws 368 13-7 Satellites: Orbits and Energy 371 13-8 Einstein and Gravitation 374 Review & Summary 376 Questions 377 Problems 378 14 Fluids 386 14-1 Fluids, Density, and Pressure 386 14-2 Fluids at Rest 388 14-3 Measuring Pressure 392 14-4 Pascal’s Principle 393 14-5 Archimedes’ Principle 394 14-6 The Equation of Continuity 398 14-7 Bernoulli’s Equation 401 Review & Summary 405 Questions 405 Problems 406 15 Oscillations 413 15-1 Simple Harmonic Motion 413 15-2 Energy in Simple Harmonic Motion 421 15-3 An Angular Simple Harmonic Oscillator 423 15-4 Pendulums, Circular Motion 424 15-5 Damped Simple Harmonic Motion 430 15-6 Forced Oscillations and Resonance 432 Review & Summary 434 Questions 434 Problems 436 16 Waves—I 444 16-1 Transverse Waves 444 16-2 Wave Speed on a Stretched String 452 16-3 Energy and Power of a Wave Traveling Along a String 454 16-4 The Wave Equation 456 16-5 Interference of Waves 458 16-6 Phasors 462 16-7 Standing Waves and Resonance 465 Review & Summary 470 Questions 471 Problems 472 17 Waves—II 479 17-1 Speed of Sound 479 17-2 Traveling Sound Waves 482 17-3 Interference 485 17-4 Intensity and Sound Level 488 17-5 Sources of Musical Sound 492 17-6 Beats 496 17-7 The Doppler Effect 498 17-8 Supersonic Speeds, Shock Waves 503 Review & Summary 504 Questions 505 Problems 506 18 Temperature, Heat, and the First Law of Thermodynamics 514 18-1 Temperature 514 18-2 The Celsius and Fahrenheit Scales 518 18-3 Thermal Expansion 520 18-4 Absorption of Heat 522 18-5 The First Law of Thermodynamics 528 18-6 Heat Transfer Mechanisms 534 Review & Summary 538 Questions 540 Problems 541 19 The Kinetic Theory of Gases 549 19-1 Avogadro’s Number 549 19-2 Ideal Gases 550 19-3 Pressure, Temperature, and RMS Speed 554 19-4 Translational Kinetic Energy 557 19-5 Mean Free Path 558 19-6 The Distribution of Molecular Speeds 560 19-7 The Molar Specific Heats of an Ideal Gas 564 19-8 Degrees of Freedom and Molar Specific Heats 568 19-9 The Adiabatic Expansion of an Ideal Gas 571 Review & Summary 575 Questions 576 Problems 577 20 Entropy and the Second Law of Thermodynamics 583 20-1 Entropy 583 20-2 Entropy in the Real World: Engines 590 20-3 Refrigerators and Real Engines 595 20-4 A Statistical View of Entropy 598 Review & Summary 602 Questions 603 Problems 604 Appendices A The International System of Units (SI) A-1 B Some Fundamental Constants of Physics A-3 C Some Astronomical Data A-4 D Conversion Factors A-5 E Mathematical Formulas A-9 F Properties of the Elements A-12 G Periodic Table of the Elements A-15 Answers to Checkpoints and Odd-Numbered Questions and Problems AN-1 Index I-1


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Product Details
  • ISBN-13: 9781118233764
  • Publisher: John Wiley & Sons Inc
  • Publisher Imprint: John Wiley & Sons Inc
  • Depth: 25
  • Height: 274 mm
  • No of Pages: 672
  • Series Title: English
  • Sub Title: Chapter 1-20
  • Weight: 1588 gr
  • ISBN-10: 111823376X
  • Publisher Date: 24 Jul 2013
  • Binding: Hardback
  • Edition: 10
  • Language: English
  • Returnable: N
  • Spine Width: 23 mm
  • Volume: 1
  • Width: 239 mm

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