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Speed, Displacement, and Velocity: An Introduction to Vectors |
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1 | (14) |
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The tip-to-tail (or polygon) method |
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Component method for adding vectors |
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Uniformly Accelerated Motion |
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15 | (13) |
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Uniformly accelerated motion along a straight line |
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Graphical interpretations |
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Acceleration due to gravity |
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28 | (24) |
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Law of universal gravitation |
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Relation between mass and weight |
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Coefficient of kinetic friction |
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Coefficient of static friction |
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Mathematical operations with units |
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Equilibrium Under the Action of Concurrent Forces |
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52 | (10) |
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An object is in equilibrium |
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First condition for equilibrium |
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Problem solution method (concurrent forces) |
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Equilibrium of a Rigid Body Under Coplanar Forces |
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62 | (13) |
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Two conditions for equilibrium |
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Position of the axis is arbitrary |
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75 | (11) |
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Gravitational potential energy |
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86 | (7) |
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93 | (13) |
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Impulse causes change in momentum |
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Conservation of linear momentum |
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Collisions and explosions |
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Perfectly elastic collision |
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Coefficient of restitution |
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Angular Motion in a Plane |
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106 | (12) |
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Equations for uniformly accelerated angular motion |
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Relations between angular and tangential quantities |
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118 | (15) |
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Torque and angular acceleration |
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Kinetic energy of rotation |
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Combined rotation and translation |
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Analogous linear and angular quantities |
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Simple Harmonic Motion and Springs |
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133 | (12) |
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Graph of a vibratory motion |
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Acceleration in terms of T |
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145 | (8) |
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153 | (11) |
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Standard atmospheric pressure |
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164 | (9) |
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173 | (5) |
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Linear expansion of solids |
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178 | (8) |
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Standard conditions or standard temperature and pressure (S.T.P.) |
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Dalton's Law of partial pressures |
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186 | (6) |
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Average translational kinetic energy |
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192 | (8) |
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Transfer of Thermal Energy |
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200 | (5) |
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Energy can be transferred |
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First Law of Thermodynamics |
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205 | (12) |
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First Law of Thermodynamics |
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Efficiency of a heat engine |
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Entropy and the Second Law |
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217 | (4) |
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Second Law of Thermodynamics |
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Entropy is a measure of disorder |
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221 | (10) |
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Speed of a transverse wave |
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Longitudinal (compressional) waves |
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231 | (10) |
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Equations for sound speed |
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Intensity (or sound) level |
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Coulomb's Law and Electric Fields |
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241 | (11) |
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Strength of the electric field |
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Electric field due to a point charge |
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Electric Potential; Capacitance |
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252 | (13) |
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Electrical potential energy |
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Electron volt energy unit |
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Capacitors in parallel and series |
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Energy stored in a capacitor |
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Current, Resistance, and Ohm's Law |
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265 | (9) |
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Measurement of resistance by ammeter and voltmeter |
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Terminal potential difference |
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Resistance varies with temperature |
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274 | (5) |
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Thermal energy generated in a resistor |
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Equivalent Resistance; Simple Circuits |
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279 | (13) |
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292 | (6) |
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Kirchhoff's node (or junction) rule |
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Kirchhoff's loop (or circuit) rule |
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Set of equations obtained |
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Forces in Magnetic Fields |
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298 | (10) |
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Charge moving through a magnetic field |
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Magnetic field at a point |
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Force on a current in a magnetic field |
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Sources of Magnetic Fields |
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308 | (6) |
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Magnetic fields are produced |
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Direction of the magnetic field |
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Magnetic field of a current element |
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Induced EMF; Magnetic Flux |
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314 | (10) |
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Magnetic effects of matter |
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Faraday's Law for induced emf |
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Electric Generators and Motors |
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324 | (7) |
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Inductance; R-C and R-L Time Constants |
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331 | (8) |
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Energy stored in an inductor |
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339 | (9) |
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Emf generated by a rotating coil |
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Thermal energy generated or power lost |
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348 | (9) |
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357 | (7) |
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Critical angle for total internal reflection |
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364 | (8) |
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Object and image relation |
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372 | (9) |
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Combination of thin lenses |
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Interference and Diffraction of Light |
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381 | (9) |
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Single-slit Fraunhofer diffraction |
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Diffraction grating equation |
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390 | (8) |
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Special theory of relativity |
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Relativistic linear momentum |
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Velocity addition formula |
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Quantum Physics and Wave Mechanics |
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398 | (8) |
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Resonance of de Broglie waves |
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406 | (5) |
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Origin of spectral series |
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411 | (3) |
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Pauli exclusion principle |
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414 | (10) |
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Nuclear charge and atomic number |
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424 | (8) |
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Radiation damage potential |
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Appendix A Significant Figures |
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432 | (2) |
Appendix B Trigonometry Needed for College Physics |
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434 | (3) |
Appendix C Exponents |
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437 | (2) |
Appendix D Logarithms |
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439 | (3) |
Appendix E Prefixes for Multiples of SI Units; The Greek Alphabet |
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442 | (1) |
Appendix F Factors for Conversions to SI Units |
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443 | (1) |
Appendix G Physical Constants |
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444 | (1) |
Appendix H Table of the Elements |
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445 | (2) |
Index |
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