6-4 Motion in the Presence of Resistive Force (2/2)

WeekCourse ContentCourse Video
Chapter 0第零章 物理中的數學
Equations & The Quadratic Formula
Linear Equations
Exponents
Trigonal Function
The Binomial Expansion
Logarithms
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Complex Numbers
Differential and Integral Calculus
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Taylor ExpansionWatch Online
IntegrationWatch Online
Differential EquationWatch Online
Chapter 1第一章 Physics and Measurement
1-0 課程概述
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1-1 Standard of Length, Mass, and Time
1-2 Matter and Model Building
1-3 Dimensional Analysis
1-4 Conversion of Units
1-5 Estimates and Order-of-Magnitude Calculation
1-6 Significant Figures
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Chapter 2第二章 Motion in One Dimension
2-1 Position, Velocity, and Speed
2-2 Instantaneous Velocity and Speed
2-3 Analysis Model: The Particle Under Constant Velocity
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2-4 Acceleration (special example)
2-5 Motion Diagrams
2-6 Motion Under Constant Acceleration
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2-7 Freely Falling Objects
2-8 Kinematic Equations Derived from Calculus
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Chapter 4第四章 Motion in Two Dimensions
4-0 課程概述 (第三章合併第四章講述)
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4-1 Position, Velocity, and Acceleration
4-2 Two Dimensional Motion with Constant Acceleration
4-3 Projectile Motion
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4-4 Uniform Circular Motion
4-5 Tangential and Radial Acceleration
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4-6 Relative Velocity and Relative AccelerationWatch Online
Chapter 5第五章 The Laws of Motion
5-1 The Concept of Force
5-2 Newton’s First Law and Inertial Frames
5-3 Mass
5-4 Newton’s Second Law
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5-5 The Gravitation Force and Weight
5-6 Newton’s Third Law
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5-7 Some Applications of Newton’s LawsWatch Online
5-8 Forces of FrictionWatch Online
Chapter 6第六章 Circular Motion and Other Applications of Newton’s Laws
6-1 Newton’s Second Law for a Particle in Uniform Circular Motion
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6-2 Nonuniform Circular MotionWatch Online
6-3 Motion in Accelerated FramesWatch Online
6-4 Motion in the Presence of Resistive Force (1/2)Watch Online
6-4 Motion in the Presence of Resistive Force (2/2)Watch Online
Chapter 7第七章 Energy of a System
7.1 Systems and Environments
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7.2 Work Done by a Constant Force
7.3 The Scalar Product of Two Vectors
7.4 Work Done by a Varying Force
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7.5 Kinetic Energy and the Work-Kinetic Energy Theorem
7.6 Potential Energy of a System
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7.7 Conservative and Nonconservative ForcesWatch Online
7.7 Conservative and Nonconservative Forces
7.8 Relationship Between Conservative Forces and Potential Energy
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Chapter 8第八章 Conservation of Energy
8.2 The Isolated System
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8.1 The Nonisolated System: Conservation of Energy
8.2 The Isolated System
8.3 Situations Involving Kinetic Friction
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8.4 Changes in Mechanical Energy for Nonconservative ForcesWatch Online
8.4 Changes in Mechanical Energy for Nonconservative Forces
8.5 Power
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Chapter 9第九章 Systems of Particles and Conservation of Linear Momentum
9.1 Linear Momentum and Its Conservation
9.2 Isolated System
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9.4 Collisions in One DimensionWatch Online
9.5 Collisions in Two DimensionsWatch Online
9.6 The Center of MassWatch Online
9.7 Motion of a System of ParticlesWatch Online
9.8 Deformable SystemsWatch Online
9.9 Rocket PropulsionWatch Online
Chapter 10第十章 Rotation of a Rigid Object About a Fixed Axis
10.1 Angular Position, Velocity, and Acceleration
10.2 Rotational Kinematics: The Rigid Object Under Constant Angular Acceleration
10.3 Angular and Translational Quantities
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10.4 Rotational Kinetic EnergyWatch Online
10.5 Calculation of Moments of Inertia
10.6 Torque
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10.7 The Rigid Body Under a Net Torque (1/3)Watch Online
10.7 The Rigid Body Under a Net Torque (2/3)Watch Online
10.7 The Rigid Body Under a Net Torque (3/3)Watch Online
10.8 Energy Considerations in Rotational MotionWatch Online
Chapter 11第十一章 Conservation of Angular Momentum
11.1 The Vector Product and Torque
11.2 Angular Momentum: The Nonisolated System
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11.3 Angular Momentum of a Rotating Rigid Object
11.4 The Isolated System: Conservation of Angular Momentum
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11.4 The Isolated System: Conservation of Angular Momentum
11.5 The Motion of Gyroscopes and Tops
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Chapter 12第十二章 Static Equilibrium Elasticity
12.1 The Rigid Object in Equilibrium
12.2 More on the Center of Gravity
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12.3 Examples of Rigid Objects in EquilibriumWatch Online
12.4 Elastic Properties of Solids (1/2)Watch Online
12.4 Elastic Properties of Solids (2/2)Watch Online
同學提出的問題:靜力平衡、力矩Watch Online
Chapter 14第十四章 Fluids
14.1 Pressure
14.2 Variation of Pressure with Depth
14.3 Pressure Measurements
14.4 Buoyancy Forces and Archimede’s Principle
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14.5 Fluid Dynamics
14.6 Bernoulli’s Equation
14.7 Other applications of fluid dynamics
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Chapter 15第十五章 Oscillation Motion
15.1 Motion of an Object Attached to a Spring
15.2 The Particle in Simple Harmonic Motion (1/2)
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15.2 The Particle in Simple Harmonic Motion (2/2)Watch Online
15.3 Energy of the Simple Harmonic Oscillator
15.4 Comparing Simple Harmonic Motion with Uniform Circular Motion
15.5 The Pendulum
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15.6 Damped Oscillations (1/2)Watch Online
15.6 Damped Oscillations (2/2)Watch Online
15.7 Forced OscillationsWatch Online
Chapter 16第十六章 Wave Motion
16.1 Propagation of a Disturbance
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16.2 The Traveling Wave Model
16.3 The Speed of Waves on Strings
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16.4 Reflection and TransmissionWatch Online
16.5 Rate of Energy Transfer by Sinusoidal Waves on StringsWatch Online
16.6 The Linear Wave Equation – Physical ModelWatch Online
Chapter 18第十八章 Superposition and Standing (第十七章合併第十八章講述)
18.1 Superposition and Interferences18.2 Standing Waves
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18.3 Standing Waves in Strings Fixed at Both EndsWatch Online
18.4 Resonance
18.5 Standing waves in air columns
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18.6 Standing Waves in Rods and Membranes
18.7 Beats: Interference in Time
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18.8 Nonsinusoidal Wave Patterns (1/2)Watch Online
18.8 Nonsinusoidal Wave Patterns (2/2)Watch Online
Chapter 19第十九章 Temperature
19.1 Temperature and the Zeroth Law of Thermodynamics
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19.2 Thermometers and the Celsius Temperature scale
19.3 The Constant-Volume Gas Thermometer and the Absolute Temperature Scale
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19.4 Thermal Expansion of Solids and LiquidsWatch Online
19.5 Macroscopic Description of an Ideal GasWatch Online
Chapter 20第二十章 The First Law of Thermodynamics
20.1 Heat and Internal Energy
20.2 Specific Heat and Calorimetry
20.3 Latent Heat
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20.2 Specific Heat and CalorimetryWatch Online
20.3 Latent HeatWatch Online
20.4 Work and Heat in ThermodynamicsWatch Online
20.5 The First Law of ThermodynamicsWatch Online
20.6 Some Applications of the First Law of ThermodynamicsWatch Online
20.7 Energy Transfer MechanismsWatch Online
Chapter 21第二十一章 The Kinetic Theory of Gases
21.1 Molecular Model of an Ideal Gas
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21.2 Molecular Specific Heat of an Ideal GasWatch Online
21.3 Adiabatic Processes for an Ideal Gas
21.4 The Equipartition of Energy
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21.5 Distribution of Molecular Speeds (1/2)Watch Online
21.5 Distribution of Molecular Speeds (2/2)Watch Online
Chapter 22第二十二章 Heat Engines, Entropy, and the Second Law of Thermodynamics
22.1 Heat Engines and the Second Law of Thermodynamics
22.2 Heat Pumps and Refrigerators
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22.3 Reversible and Irreversible ProcessesWatch Online
22.4 The Carnot Engine
22.5 Gasoline and Diesel Engines
22.6 Entropy
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22.7 Entropy change in irreversible process
22.8 Entropy on a Microscopic Scale
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