http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_prototype.html
Chapter
1. Bubble Equation prototype
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/einsteins_equation_for_rest_energy.html
Chapter
1. Einstein's Equation for Rest Energy
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_prototype test.html
Chapter
1. Bubble Equation prototype
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Chapter
1. Bubble Equation prototype
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Chapter
1. Bubble Equation prototype
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_eqation_prototype01.html
Chapter
. Bubble Equation prototype
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq01.html
Chapter
1. Average velocity for linear motion (2-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_equation_prototype.html
Chapter
1. Bubble Equation prototype
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq05.html
Chapter
2. Velocity, acceleration, and time for constant accelaration only (2-5)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq09.html
Chapter
2. Position, acceleration, and time for constant accelaration only (2-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq11.html
Chapter
2. Velocity, acceleration, and position for constant acceleration only (2-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq02.html
Chapter
2. Position verses time for linear motion with constant velocity (2-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq03.html
Chapter
2. Position verses time for linear motion with constant velocity (2-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq13.html
Chapter
2. Velocity, acceleration, and time for free fall (2-13)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq14.html
Chapter
2. Position, acceleration, and time for free fall (2-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch02_eq15.html
Chapter
2. Velocity, acceleration, and position for free fall (2-15)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq01.html
Chapter
3. Finding vector components from vector magnitude and direction (3-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq02.html
Chapter
3. Finding vector magnitude and direction from vector components (3-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq03.html
Chapter
3. Rules for vector addition using components (3-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq04.html
Chapter
3. Rules for vector subtraction using components (3-4)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq05.html
Chapter
3. Rules for multiplying a vector by a scalar using components (3-5)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq06.html
Chapter
3. Displacement vector equals the change in position vector over time interval (3-6)
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Chapter
3. Velocity vector equals displacement vector divided by time interval (3-7)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq08.html
Chapter
3. Components of the velocity vector (3-8)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq09.html
Chapter
3. Acceleration vector equals change in velocity vector divided by time interval (3-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq10.html
Chapter
3. Components of the acceleration vector (3-10)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq11.html
Chapter
3. Components of the acceleration vector in projectile motion (3-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq12.html
Chapter
3. Velocity, acceleration, and time for projectile motion (3-12)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq13.html
Chapter
3. Position, acceleration, and time for projectile motion (3-13)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq17.html
Chapter
3. Centripetal acceleration (3-17)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq01.html
Chapter
4. Net external force on an object (4-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq02.html
Chapter
4. Newton's second law of motion (4-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq03.html
Chapter
4. Newton's second law, alternative form (4-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq04.html
Chapter
4. Newton's second law in component form (4-4)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq05.html
Chapter
4. Weight of an object of mass M (4-5)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq06.html
Chapter
4. Newton's first law of motion (4-6)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq07.html
Chapter
4. Newton's third law of motion (4-7)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch05_eq01.html
Chapter
5. Magnitude of the static friction force (5-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch05_eq05.html
Chapter
5. Angle at which an object slips on an incline (5-5)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch05_eq06.html
Chapter
5. Magnitude of the kinetic friction force (5-6)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch05_eq08.html
Chapter
5. Drag force for small objects at low speeds (5-8)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch05_eq09.html
Chapter
5. Drag force for larger objects at faster speeds (5-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch05_eq10.html
Chapter
5. Centripetal acceleration (5-10)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch05_eq11.html
Chapter
5. Newton's second law equation for uniform circular motion (5-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq01.html
Chapter
6. Work done by a constant force that points in the same direction as straight-line displacements (6-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq02.html
Chapter
6. Work done by constant force at an angle 0 to the straight-line displacement (6-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq04.html
Chapter
6. Speed, acceleration, and position for stright-line motion with constant acceleration (6-4)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq06.html
Chapter
6. Work done by a constant net force, straight-line motion (6-6)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq08.html
Chapter
6. Kinetic energy (6-8)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq09.html
Chapter
6. The work-energy theorem (6-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq11.html
Chapter
6. Hooke's law (6-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq13.html
Chapter
6. Work done to stretch a spring (6-13)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq14.html
Chapter
6. Gravitation potential energy (6-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq17.html
Chapter
6. Change in kinetic energy if only the gravitational force does work (6-17)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq19.html
Chapter
6. Change in kinetic energy if only the gravitational force does work (6-17)
5220f527757a2ebc5300016a
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq19_2.html
Chapter
6. Gravitation potential energy (6-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq23.html
Chapter
6. Conservation of mechanical energy (6-23)
52210a38757a2ebd530000e2
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq24.html
Chapter
6. Conservation of mechanical energy - alternative version (6-24)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq26.html
Chapter
6. Change in mechanical energy when nonconservative forces act (6-26)
52210d5c757a2ea8530000e4
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq28.html
Chapter
6. The law of conservation of energy (6-28)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq19_3.html
Chapter
6. Spring potential energy (6-19)
522113b8757a2ea8530000e8
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch03_eq09_ch07.html
Chapter
7. Acceleration vector equals change in velocity vector divided by time interval (3-9)
522129f5757a2e6c47000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch07_eq05.html
Chapter
7. Linear momentum (7-5)
52212baa757a2e6d47000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch07_eq13.html
Chapter
7. External force and total momentum change for a system of objects (7-13)
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Chapter
7. Conservation of momentum (7-14)
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Chapter
7. Momentum conservation in a completely inelastic collision (7-18)
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Chapter
7. External force and momentum change for an object (7-23)
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Chapter
7. Collision force, contract time, and momentum change (7-24)
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Chapter
7. Position of the center of mass of a system (7-28)
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Chapter
7. Total momentum and the velocity of the center of mass (7-33)
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Chapter
7. How the net external force of a system affect the center of mass (7-34)
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Chapter
8. Average angular velocity (8-1)
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Chapter
8. Speed of a point on a rotating rigid object (8-3)
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Chapter
8. Moment of inertia of an object (8-6)
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Chapter
8. Rotational kinetic energy of a rigid object (8-7)
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Chapter
8. The parallel-axis theorem (8-8)
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Chapter
8. Total kinetic energy for a rigid object undergoing both translation and rotation (8-12)
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Chapter
8. Condition for rolling without slipping (8-13)
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Chapter
8. Average angular acceleration (8-14)
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Chapter
8. Angular velocity, angular acceleration, and time for constant angular acceleration only (8-15)
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Chapter
8. Angular position, angular acceleration, and time for constant angular acceleration only (8-16)
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Chapter
8. Angular velocity, angular acceleration, and angular position for constant angular acceleration only (8-17)
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Chapter
8. Magnitude of torque (8-18)
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Chapter
8. Magnitude of torque in terms of lever arm (8-19)
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Chapter
8. Newton's second law of rotational motion (8-20)
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Chapter
8. Angular momentum for rotation around a fixed axis (8-22)
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Chapter
8. Magnitude of the angular momentum of particle (8-23)
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Chapter
6. Spring potential energy (6-19)
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Chapter
9. Spring constant for an object under tension or compression (9-2)
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Chapter
9. Hooke's Law (9-1)
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Chapter
9. Hooke's law for an object under tension or compression (9-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch09_eq06.html
Chapter
9. Hooke's law for an oject under volume stress (9-6)
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Chapter
9. Hooke's law for an object under shear stress (9-9)
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Chapter
10. Centripetal acceleration (3-17)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch10_eq02.html
Chapter
10. Newton's law of universal gravitation (10-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch10_eq03.html
Chapter
10. Value of g at Earth's surface (10-3)
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Chapter
10. Gravitation potential energy (10-4)
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Chapter
10. Escape speed (10-10)
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Chapter
10. Speed of an Earth satellite in a circular orbit (10-11)
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Chapter
10. Relationship between orbital period and radius for a circular orbit (10-12)
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Chapter
10. Total mechanical energy for circular orbit (10-13)
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Chapter
10. Newton's form of Kepler's law of periods (10-16)
52603532757a2e9a4f000002
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Chapter
11. Definition of density (11-1)
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Chapter
11. Definition of pressure (11-2)
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Chapter
11. Variation of pressure with depth in a fluid with unifrom density (equation of hydrostatic equilibrium) (11-8)
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Chapter
11. Net force on an object due to a pressure difference (11-10)
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Chapter
11. Equation of continuity for steady flow of an imcompressible fluid (11-19)
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Chapter
11. Bernouli's equation (11-27)
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Chapter
11. Reynolds number (11-29)
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Chapter
11. Hagen-Poiseuille equation for laminar flow of a viscous fluid (11-30)
52695c4a757a2e3739000000
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Chapter
12. Frequency and period (12-1)
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Chapter
. DELETE DELETE
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Chapter
12. Hooke's law (6-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_11.html
Chapter
12. Angular frequency, period, and frequency for a block attached to an ideal spring (12-11)
526e914f757a2ebc55000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_12.html
Chapter
12. Position as a function of time for simple harmonic motion (12-12)
526e93f3757a2e814c000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq14.html
Chapter
12. Velocity as a function of time for simple harmonic motion (12-14)
526e9d53757a2e0a57000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq15.html
Chapter
12. Acceleration as a function of time for simple harmonic motion (12-15)
526ea1bb757a2ec656000000
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Chapter
12. Spring potential energy (6-19)
526ea46c757a2e5a57000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq21.html
Chapter
12. Total mechanical energy of a mass oscillating on an ideal spring (12-21)
526ea56c757a2e4957000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq27.html
Chapter
12. Angular frequency, period, and frequency for a simple pendulum (small amplitude) (12-27)
52715314757a2eaa7a000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq31.html
Chapter
12. Angular frequency, period, and frequency for a physical pendulum (small amplitude) (12-31)
52715808757a2eaa7a000001
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq35.html
Chapter
12. Amplitude of an underdamped oscillation (12-35)
52715ac9757a2e277e000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq36.html
Chapter
12. Angular frequency of an underdamped oscillation (12-36)
52717b36757a2e7f01000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch12_eq42.html
Chapter
12. Amplitude of a damped, driven oscillation (12-42)
527283b6757a2e8902000002
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Chapter
13. Frequency and period (12-1)
5272b4bf757a2e980f000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch13_01.html
Chapter
13. Angular frequency of a wave (13-1)
5272b5a8757a2eda0f000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch13_eq02.html
Chapter
13. Propagation speed, frequency, and wavelength of a wave (13-2)
5272f90b757a2ee512000001
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Chapter
13. Angular wave number (13-5)
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Chapter
13. Wave function for a sinusoidal wave propagating in the +x direction (13-6)
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Chapter
13. Propagation speed, angular frequency, and angular wave number (13-7)
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Chapter
13. Pressure variation for a sinusoidal sound wave propagating in the +x direction (13-9)
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Chapter
13. Speed of a transverse wave on a rope (13-10)
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Chapter
13. Speed of a longitudinal wave in a fluid (13-11)
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Chapter
13. Speed of a longitudinal wave in a solid rod (13-12)
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Chapter
13. Conditions for constructive and destructive interference of waves from two sources (13-15)
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Chapter
13. Frequencies for a standing wave on a string (13-19)
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Chapter
13. Wavelengths for a standing wave on a string (13-18)
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Chapter
13. Wavelengths for a standing sound wave in a closed pipe (13-21)
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Chapter
13. Wavelengths for a standing sound wave in an open pipe (13-23)
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Chapter
13. Beat frequency (13-25)
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Chapter
13. Sound wave intensity in terms of displacement amplitude A (13-29)
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Chapter
13. Sound wave intensity in terms of pressure amplitude Pmax (13-31)
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Chapter
13. Inverse-square law for sound waves (13-32)
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Chapter
13. Sound intensity level (13-33)
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Chapter
13. The Doppler effect (13-35)
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Chapter
13. Mach angle (13-37)
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Chapter
14. Ideal gas law in terms of number of molecules (14-6)
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Chapter
14. Ideal gas law in terms of number of moles (14-7)
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Chapter
14. Temperature and average translational kinetic energy of an ideal gas molecule (14-13)
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Chapter
14. Change in length due to a temperature change (14-18)
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Chapter
14. Root-mean-square speed of molecules in an ideal gas (14-15)
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Chapter
14. Change in volume due to a temperature change (14-19)
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Chapter
14. Quantity of heat and the resulting temperature change (14-20)
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Chapter
14. Heat required for a phase change (14-21)
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Chapter
14. Rate of energy flow in radiation (14-22)
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Chapter
14. Rate of energy flow in conduction (14-23)
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Chapter
15. The first law of thermodynamics (15-2)
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Chapter
15. Work done in an isobaric (constant-pressure) process (15-4)
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Chapter
15. Work done by an ideal gas in an isothermal (constant-temperature) process (15-6)
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Chapter
15. Quantity of heat and the resulting temperature change in terms of molar specific heat (15-10)
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Chapter
15. Molar specific heats of an ideal gas (15-15)
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Chapter
15. Molar specific heat at constant volume for an ideal gas (15-18)
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Chapter
15. Molar specific heat at constant volume for an ideal gas (15-18)
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Chapter
15. Molar specific heat at constant volume for an ideal gas (15-18)
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Chapter
15. Molar specific heat at constant volume for an ideal gas (15-18)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch15_eq22.html
Chapter
15. Pressure and volume for ideal gas, adiabatic process (15-22)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch15_eq23.html
Chapter
15. Temperature and volume for ideal gas, adiabatic process (15-23)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch15_eq24.html
Chapter
15. Work done by a heat engine (15-24)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch15_eq28.html
Chapter
15. Efficiency of a Carnot engine (15-28)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch15_eq33.html
Chapter
15. Entropy change in a reversible isothermal process (15-33)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch16_eq01.html
Chapter
16. Coulombâs law (16-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch10_eq02_ch16.html
Chapter
16. Newton's law of universal gravitation (10-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch16_eq02.html
Chapter
16. Electric field and electric force (16-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch16_eq04.html
Chapter
16. Magnitude of the electric field due to a point charge (16-4)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch16_eq06.html
Chapter
16. Electric flux (16-6)
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Chapter
16. Gauss's law (16-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch17_eq02.html
Chapter
17. Electric potential energy for a charge in a uniform electric field (17-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch10_eq02_ch17.html
Chapter
17. Newtonâs law of universal gravitation (10-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch10_eq04_ch17.html
Chapter
17. Gravitational potential energy (10-4)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch16_eq01_ch17.html
Chapter
17. Coulombâs law (16-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch17_eq03.html
Chapter
17. Electric potential energy of two point charges (17-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch17_eq05.html
Chapter
17. Electric potential related to electric potential energy (17-5)
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Chapter
. Electric potential difference related to electric potential energy difference (17-6)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch17_eq06.html
Chapter
17. Electric potential difference related to electric potential energy difference (17-6)
52fc1bda757a2ee779000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch17_eq08.html
Chapter
17. Electric potential due to a point charge (17-8)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch17_eq13.html
Chapter
17. Capacitance of a parallel-plate capacitor (17-13)
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Chapter
17. Charge, voltage, and capacitance for a capacitor (17-14)
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Chapter
17. Electric potential energy stored in a capacitor (17-17)
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Chapter
17. Spring potential energy (6-19)
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Chapter
17. Equivalent capacitance of capacitors in series (17-22)
52fe5204757a2e4916000000
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Chapter
17. Equivalent capacitance of capacitors in parallel (17-26)
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Chapter
17. Electric field in an isolated parallel-plate capacitor with a dielectric (17-27)
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Chapter
18. Definition of current (18-1)
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Chapter
17. Capacitance of a parallel-plate capacitor with a dielectric (17-28)
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Chapter
18. Current and drift speed (18-3)
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Chapter
18. Definition of resistance (18-8)
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Chapter
18. Relationship among potential difference, current, and resistance (18-9)
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Chapter
18. Equivalent resistance of resistors in series (18-11)
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Chapter
18. Equivalent resistance of resistors in parallel (18-20)
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Chapter
18. Electric potential difference related to electric potential energy difference (17-6)
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Chapter
18. Power for a circuit element (18-23)
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Chapter
18. Power for a resistor (18-24)
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Chapter
18. Charge, voltage, and capacitance for a capacitor (17-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch18_eq27.html
Chapter
18. Capacitor charge and current in a charging series RC circuit (18-27)
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Chapter
18. Capacitor charge and current in a discharging series RC circuit (18-30)
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Chapter
19. Magnitude of magnetic force on a moving charged particle (19-1)
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Chapter
19. Current and drift speed (18-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch19_eq05.html
Chapter
19. Magnitude of magnetic force on a current-carrying wire (19-5)
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Chapter
19. Magnitude of torque (8-18)
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Chapter
19. Magnitude of magnetic torque on a current loop (19-8)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch19_eq09.html
Chapter
19. Magnitude of magnetic field due to a long, straight wire (19-9)
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Chapter
19. Ampèreâs law (19-13)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch19_eq17.html
Chapter
19. Magnetic field inside a long, straight solenoid (19-17)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch20_eq01.html
Chapter
20. Magnetic flux (20-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch20_eq02.html
Chapter
20. Faradayâs law of induction (20-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch20_eq03.html
Chapter
20. Faradayâs law and Lenzâs law for induction (20-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch20_eq07.html
Chapter
20. Emf in an ac generator (20-7)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch21_eq01.html
Chapter
21. Voltage of an ac source (21-1)
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Chapter
21. Power for a resistor (18-24)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch21_eq05.html
Chapter
21. Root mean square value (21-5)
5303cc28757a2e6940000000
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Chapter
21. Power for a circuit element (18-23)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch21_eq10.html
Chapter
21. Input and output voltages for a transformer (21-10)
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Chapter
21. Definition of inductance (21-13)
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Chapter
21. Magnetic field inside a long, straight solenoid (19-17)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch21_eq16.html
Chapter
21. Voltage across an inductor (21-16)
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Chapter
21. Angular frequency, period, and frequency for a block attached to an ideal spring (12-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch21_eq23.html
Chapter
21. Angular frequency, period, and frequency for an LC circuit (21-23)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch21_eq27.html
Chapter
21. Magnetic and electric energies in an LC circuit (21-27)
53053f8e757a2ea554000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch21_eq37.html
Chapter
21. Current in a driven LRC circuit (21-37)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq02.html
Chapter
22. Propagation speed, frequency, and wavelength of an electromagnetic wave (22-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch16_eq09_ch22.html
Chapter
22. Gaussâs law for the electric field (16-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq05.html
Chapter
22. Gaussâs law for the magnetic field (22-5)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch20_eq03_ch22.html
Chapter
22. Faradayâs law and Lenzâs law for induction (20-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq07.html
Chapter
22. Faradayâs law in terms of circulation (22-7)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch19_eq13_ch22.html
Chapter
22. Ampèreâs law (19-13)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq08.html
Chapter
22. Maxwell-Ampère law (22-8)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq11.html
Chapter
22. Speed of light in a vacuum (22-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq14.html
Chapter
22. Electric energy density (22-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq19.html
Chapter
22. Magnetic energy density (22-19)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq24.html
Chapter
22. Average energy density in an electromagnetic wave (22-24)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq25.html
Chapter
22. Intensity of an electromagnetic wave (22-25)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq26.html
Chapter
22. Energy of a photon (22-26)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq01.html
Chapter
23. The law of reflection (23-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq05.html
Chapter
23. Index of refraction (23-5)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq06.html
Chapter
23. Snellâs law of refraction (23-6)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq08.html
Chapter
23. Wavelength of light in a medium (23-8)
530b8ab6757a2e3408000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq10.html
Chapter
23. Critical angle for total internal reflection (23-10)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq14.html
Chapter
23. Brewsterâs angle for polarization by reflection (23-14)
530bae5a757a2e350a000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq24.html
Chapter
23. Dark fringes in diffraction through a slit (23-24)
530bb033757a2e460a000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch23_eq26.html
Chapter
23. Rayleighâs criterion for resolvability (23-26)
530bb2ca757a2ede0a000000
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch24_eq01.html
Chapter
24. Image distance for a plane mirror (24-1)
530cdc11757a2e7c1400000a
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch24_eq02.html
Chapter
24. Lateral magnification (24-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch24_eq03.html
Chapter
24. Focal length of a spherical mirror (24-3)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch24_eq11.html
Chapter
24. Mirror equation and lens equation (24-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch24_eq14.html
Chapter
24. Lateral magnification for a mirror or lens (24-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch24_eq24.html
Chapter
24. Lensmakerâs equation for the focal length of a thin lens (24-24)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq06_ch25.html
Chapter
25. Newtonâs first law of motion (4-6)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch04_eq02_ch25.html
Chapter
25. Newtonâs second law of motion (4-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq01.html
Chapter
25. Galilean coordinate transformation (25-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq05.html
Chapter
25. Galilean velocity transformation (25-5)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq11_ch25.html
Chapter
25. Speed of light in a vacuum (22-11)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq10.html
Chapter
25. Time dilation (25-10)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq14.html
Chapter
25. Length contraction (25-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq15.html
Chapter
25. Lorentz transformation (25-15)
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Chapter
25. Inverse Lorentz transformation (25-16)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq17.html
Chapter
25. Lorentz velocity transformation (25-17)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq18.html
Chapter
25. Inverse Lorentz velocity transformation (25-18)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch06_eq09_ch25.html
Chapter
25. The work-energy theorem (6-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch07_eq23_ch25.html
Chapter
25. External force and momentum change for an object (7-23)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq19.html
Chapter
25. Relativistic gamma (25-19)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq20.html
Chapter
25. Einsteinian expressions for kinetic energy and momentum (25-20)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq21.html
Chapter
25. Rest energy (25-21)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq25_ch26.html
Chapter
26. Intensity of an electromagnetic wave (22-25)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq26_ch26.html
Chapter
26. Energy of a photon (22-26)
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Chapter
26. Energy of a photon (22-26)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq01.html
Chapter
26. Maximum kinetic energy of an electron in the photoelectric effect (26-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch14_eq22_ch26.html
Chapter
26. Rate of energy flow in radiation (14-22)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq20_ch26.html
Chapter
26. Einsteinian expressions for kinetic energy and momentum (25-20)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq19_ch26.html
Chapter
26. Relativistic gamma (25-19)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch25_eq21_ch26.html
Chapter
26. Rest energy (25-21)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq07.html
Chapter
26. Momentum and energy of a photon (26-7)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq08.html
Chapter
26. Compton scattering equation (26-8)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq10.html
Chapter
26. de Broglie wavelength (26-10)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq14.html
Chapter
26. Rydberg formula for the spectral lines of hydrogen (26-14)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch08_eq23_ch26.html
Chapter
26. Magnitude of the angular momentum of a particle (8-23)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq22.html
Chapter
26. Bohr radius (26-22)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq23.html
Chapter
26. Orbital radii in the Bohr model (26-23)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq26.html
Chapter
26. Rydberg energy (26-26)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch26_eq27.html
Chapter
26. Electron energies in the Bohr model (26-27)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch27_eq01.html
Chapter
27. Radius of a nucleus (27-1)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch27_eq02.html
Chapter
27. Binding energy of a nucleus (27-2)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch27_eq04.html
Chapter
27. Radioactive decay equation (27-4)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch22_eq26_ch28.html
Chapter
28. Energy of a photon (22-26)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch28_eq07.html
Chapter
28. Heisenberg uncertainty principle (28-7)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch28_eq09.html
Chapter
28. The Hubble law (28-9)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch11_13 copy.html
Chapter
11. Buoyant force (11-13)
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http://digfir-published.macmillanusa.com/college_physics_bubble_equation/bubble_ch11_28.html
Chapter
11. Definition of viscosity (11-28)
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