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General Physics
PHY 111/112
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Chad McAllister
Class Curriculum
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Chapter 1 Units and Vectors
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1.1 Units (2:03)
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1.2 Vectors (21:53)
Chapter 2 Motion in One Dimension
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2.1 Displacement, Velocity, and Acceleration (8:28)
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2.2 Introduction to Kinematics Calculations (11:33)
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2.3 Kinematics Calculations for Freely Falling Objects (7:30)
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2.4 Diagrams of Position vs Time (4:57)
Chapter 3 Motion in Two Dimensions
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3.1 Relative Motion (6:09)
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3.2 Projectile Motion in One and Two Dimensions (19:05)
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3.3 Projectile Motion Example #2 - Drop in height of a ball thrown by a pitcher (5:19)
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3.4 Projectile Motion Example #3 - Projectile Fired at a Building (6:02)
Chapter 4 The Laws of Motion
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4.1 Introduction to Forces, Fields, and Newton's Laws of Motion (7:08)
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4.2 Introduction to Gravity, Normal Force, and Friction (8:38)
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4.3 Examples Involving a Scale on an Elevator (11:50)
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4.4 Examples Involving Pulling on a Horizontal Surface (9:25)
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4.5 Examples Involving Inclined Planes (16:59)
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4.6 Example Involving Tension (2:53)
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4.7 Examples Involving Pulleys (11:26)
Chapter 5 Energy
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5.1 Work (18:15)
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5.2 Mechanical Energy (18:18)
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5.3 Springs (13:16)
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5.4 Power (6:33)
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5.5 Work by a Varying Force (4:04)
Chapter 6 Momentum and Collisions
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6.1 Momentum and Impulse (10:51)
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6.2 Introduction to Elastic, Inelastic, and Perfectly Inelastic Collisions (3:59)
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6.3 Collisions Example #1 - An Inelastic Collision (5:17)
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6.4 Collisions Example #2 - Exploding Fragments as a Perfectly Inelastic Collision in Reverse (8:09)
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6.5 Collisions Example #3 - Determining the Speed of a Bullet (9:14)
Chapter 7 Rotational Motion and the Law of Gravity
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7.1 Rotational Kinematics (14:43)
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7.2 Centripetal Force and Acceleration (7:16)
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7.3 Examples Involving Centripetal Force and Acceleration (12:42)
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7.4 Gravity and Centripetal Force and Acceleration (12:23)
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7.5 Kepler's Laws of Planetary Motion (8:37)
Chapter 8 Rotational Equilibrium and Rotational Dynamics
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8.1 Introduction to Torque and Rotational Inertia (9:34)
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8.2 Torque for a Door on a Hinge (3:06)
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8.3 Torque Problems for Systems in Equilibrium Example #1 (4:54)
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8.4 Torque Problems for Systems in Equilibrium Example #2 (11:11)
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8.5 Torque Problems for Systems in Equilibrium Example #3 (8:12)
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8.6 Angular Momentum and Rotational Kinetic Energy (9:08)
Chapter 9 Oscillatory Motion and Waves
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9.1 Simple Harmonic Motion (SHM), Springs, and Pendulums (16:35)
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9.2 The Frequency and Period of SHM (14:51)
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9.3 Waves (12:35)
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9.4 Standing Waves (11:00)
Chapter 10 Elasticity of Solids
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10 Elasticity of Solids (21:08)
Chapter 11 Fluids
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11.1 Density and Pressure (12:52)
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11.2 Manometers and Barometers (9:06)
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11.3 Buoyancy and Archimedes' Principle (21:46)
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11.4 The Hydraulic Jack (8:30)
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11.5 Hydrodynamics--Laminar Flow and The Equation of Continuity (7:51)
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11.6 Hydrodynamics--Bernoulli's Equation (12:12)
Chapter 12 Gases
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12.1 Pressure and Gas Laws (13:05)
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12.2 The Combined Gas Law and Dalton's Law of Partial Pressures (6:26)
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12.3 The Kinetic Model of Gases and the Perfect Gas Law (16:19)
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12.4 Maxwell Distribution of Speeds (5:12)
Chapter 13 Thermodynamics
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13.1 Introduction to the First Law of Thermodynamics (12:05)
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13.2 Heat Capacities (11:27)
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13.3 Internal Energy, Enthalpy, and Cp-Cv (9:31)
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13.4 Expansion Work (8:45)
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13.5 Calculations and Derivations Involving Internal Energy and Enthalpy (14:48)
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13.6 The 2nd and 3rd Laws of Thermodynamics and Entropy (7:03)
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13.7 Entropy Changes During Expansion and Heating (14:59)
Chapter 14 Electric Forces and Fields
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14.1 Electric Forces and Fields (16:36)
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14.2 Additional Calculations Involving Electric Forces and Fields (19:47)
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14.3 Electrostatic Equilibrium and Gauss's Law (18:59)
Chapter 15 Electric Potential
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15.1 Electric Potential and Potential Energy (9:46)
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15.2 Calculations Involving Electric Potential and Potential Energy (16:03)
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15.3 Capacitors (15:39)
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15.4 Capacitors in Circuits (16:36)
Chapter 16 Electric Circuits, Current, and Resistance
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16.1 Ohm's Law, Current, and Resistance (12:10)
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16.2 Resistors in Circuits (20:37)
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16.3 Kirchoff's Rules (21:20)
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16.4 RC Circuits (11:43)
Chapter 17 Magnetism and Induction
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17.1 Magnetic Force on a Moving Charge (8:53)
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17.2 Magnetic Force on a Current-Carrying Wire (11:18)
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17.3 Torque on a Current-Carrying Loop in a Magnetic Field (8:46)
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17.4 Magnetic Fields Generated by Current-Carrying Wires (22:39)
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17.5 Electromagnetic Induction (8:48)
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17.6 Magnetic Flux, Faraday's Law, and Lenz's Law (22:15)
Chapter 18 Light and Optics
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18.1 Wavelength, Frequency, and Energy of Photons (7:47)
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18.2 Reflection and Refraction of Light (25:27)
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18.3 Mirrors and Lenses (27:47)
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18.4 Calculations with Mirrors and Lenses (10:52)
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18.5 Double-Slit Interference (21:47)
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18.6 Thin Film Interference (17:14)
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18.7 Diffraction Gratings and Single-Slit Interference (4:47)
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