How to Use This Book |
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xi | |
Barron's Essential 5 |
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xii | |
Introduction |
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1 | (8) |
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How to Review for the AP Physics Exam |
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1 | (1) |
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Guide to This Review Book |
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1 | (2) |
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Graphical Analysis of Data |
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3 | (1) |
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Description of the AP Physics C Exam |
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3 | (1) |
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4 | (1) |
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5 | (4) |
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9 | (594) |
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29 | (1) |
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Answer Explanations: Mechanics |
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30 | (9) |
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Answer Key: Electricity and Magnetism |
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39 | (1) |
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Answer Explanations: Electricity and Magnetism |
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40 | (11) |
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51 | (8) |
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51 | (4) |
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55 | (1) |
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Problem-Solving Techniques |
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56 | (3) |
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2 One-Dimensional Kinematics |
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59 | (18) |
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59 | (8) |
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67 | (1) |
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68 | (1) |
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69 | (4) |
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73 | (1) |
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73 | (4) |
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3 Two-Dimensional Kinematics |
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77 | (28) |
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Generalization of One-Dimensional Kinematics Equations |
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78 | (1) |
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The Physical Significance of The Vectors |
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79 | (1) |
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General Approach to Solving Kinematics Problems In Two Dimensions |
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80 | (1) |
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81 | (1) |
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82 | (7) |
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Relative Position, Velocity, and Acceleration |
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89 | (1) |
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89 | (1) |
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90 | (3) |
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93 | (2) |
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Summary of Results for UCM |
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95 | (1) |
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Acceleration In Nonuniform Circular Motion |
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95 | (2) |
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97 | (3) |
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100 | (1) |
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100 | (5) |
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105 | (34) |
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107 | (3) |
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General Approach to Solving Newton's Law Problems |
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110 | (15) |
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125 | (4) |
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129 | (1) |
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129 | (10) |
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5 Work, Energy, and Power |
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139 | (28) |
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139 | (5) |
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Conservative and Nonconservative Forces |
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144 | (1) |
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Gravitational Potential Energy |
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145 | (1) |
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Spring Force (Hooke's Law) |
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146 | (1) |
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147 | (1) |
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Unification of Gravitational and Elastic Potential Energy |
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148 | (3) |
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151 | (2) |
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Solving Conservation of Energy Problems (Equation Summary) |
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153 | (2) |
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155 | (4) |
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159 | (1) |
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159 | (8) |
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6 Linear Momentum and Center of Mass |
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167 | (22) |
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167 | (8) |
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175 | (5) |
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180 | (4) |
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184 | (1) |
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184 | (5) |
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7 Rotation I: Kinematics, Force, Work, and Energy |
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189 | (22) |
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The Motivation for Developing New Parameters |
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189 | (2) |
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Fundamental Equations of Angular Kinematics |
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191 | (1) |
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The Relationships Between Angular and Linear Quantities |
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192 | (1) |
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Rotational Kinetic Energy |
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192 | (1) |
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193 | (1) |
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Rotational Analog of Newton's Second Law |
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194 | (2) |
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Work Done by an External Force |
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196 | (2) |
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Power Associated with a Torque |
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198 | (1) |
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Equation Summary with Translational Analogs |
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198 | (1) |
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199 | (2) |
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201 | (4) |
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205 | (1) |
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205 | (6) |
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8 Rotation II: Inertia, Equilibrium, and Combined Rotation/Translation |
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211 | (36) |
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216 | (2) |
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218 | (4) |
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222 | (4) |
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Static Equilibrium for Extended Objects |
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226 | (5) |
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231 | (6) |
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237 | (1) |
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237 | (10) |
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247 | (22) |
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Problem Solving: Calculating The Angular Frequency of Oscillation |
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251 | (3) |
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Problem Solving: Using Energy Conservation |
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254 | (4) |
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258 | (5) |
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263 | (1) |
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263 | (6) |
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269 | (24) |
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Gravitation Due to Spherically Symmetric Mass Distributions |
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269 | (4) |
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273 | (1) |
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273 | (2) |
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275 | (2) |
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Gravitational Potential Energy |
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277 | (5) |
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282 | (4) |
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286 | (1) |
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286 | (7) |
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11 Coulomb's Law and Electric Fields Due to Point Charges |
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293 | (28) |
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293 | (2) |
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The Concept of Fields: Gravitational Fields and Electric Fields |
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295 | (4) |
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299 | (8) |
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307 | (4) |
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311 | (1) |
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311 | (10) |
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12 Calculating Electric Fields and Potentials Due to Continuous Charge Distributions |
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321 | (22) |
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Calculating the Potential Due to a Continuous Charge Density: A General Approach |
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321 | (5) |
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Direct Conversion Between Electric Field and Potential |
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326 | (1) |
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Calculating the Electric Field Due to a Continuous Charge Density: A General Approach |
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327 | (9) |
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336 | (2) |
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338 | (1) |
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338 | (5) |
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343 | (22) |
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343 | (1) |
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344 | (13) |
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357 | (4) |
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361 | (1) |
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361 | (4) |
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14 Analysis of Circuits Containing Batteries and Resistors |
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365 | (16) |
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365 | (1) |
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Current Density and Drift Velocity |
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366 | (3) |
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369 | (6) |
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375 | (1) |
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Analysis of Circuits Containing Multiple Batteries: Kirchhoffs Laws |
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376 | (1) |
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376 | (8) |
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384 | (3) |
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387 | (1) |
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387 | (1) |
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387 | (4) |
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Qualitative Introduction to Capacitors |
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391 | (1) |
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392 | (8) |
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400 | (4) |
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404 | (1) |
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404 | (7) |
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411 | (16) |
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General Approach to Deriving Equations For RC Circuits |
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411 | (1) |
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Discharging a Capacitor Through a Resistor |
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412 | (2) |
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414 | (2) |
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416 | (2) |
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418 | (4) |
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422 | (1) |
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422 | (5) |
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427 | (30) |
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What Is a Magnetic Field? |
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427 | (4) |
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Problem Solving: Mass Spectrometer Problems |
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431 | (2) |
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Sources of Magnetic Fields |
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433 | (9) |
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442 | (1) |
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Problem Solving: How to Apply Ampere's Law |
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443 | (4) |
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447 | (5) |
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452 | (1) |
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452 | (5) |
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18 Faraday's Law and Lenz's Law |
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457 | (24) |
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Calculating The Magnetic Flux ΦB |
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457 | (1) |
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458 | (6) |
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Lenz's Law and Determining the Direction of the EMF |
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464 | (4) |
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468 | (5) |
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473 | (1) |
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473 | (8) |
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481 | (26) |
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Qualitative Understanding of Self-Inductance |
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481 | (1) |
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Quantitative Definition of Self-Inductance |
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482 | (1) |
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Energy Stored In an Inductor |
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482 | (2) |
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RI Circuits (Circuits Containing Inductors and Resistors) |
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484 | (5) |
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LC Circuits (Circuits Containing a Capacitor and an Inductor) |
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489 | (5) |
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494 | (6) |
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500 | (1) |
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500 | (7) |
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507 | (96) |
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Gauss's Law for Magnetism |
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507 | (2) |
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Maxwell's Law of Induction |
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509 | (2) |
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Displacement Current and the Ampere-Maxwell Law |
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511 | (2) |
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513 | (1) |
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514 | (1) |
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514 | (3) |
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517 | (23) |
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540 | (1) |
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Answer Explanations: Mechanics |
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541 | (8) |
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Answer Explanations: Electricity and Magnetism |
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549 | (12) |
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561 | (22) |
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583 | (1) |
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Answer Explanations: Mechanics |
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584 | (7) |
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Answer Explanations: Electricity and Magnetism |
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591 | (12) |
Appendix: Physics C Equations and Constants |
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603 | (4) |
Index |
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607 | |