|
One-Dimensional Constant Acceleration
|
|
Freefall
|
|
Constant velocity versus constant acceleration
|
|
Projectile Motion
|
|
Universal Gravitation
|
|
Circular Motion
|
|
Work and Energy
|
|
Conservation of Energy in a Spring-Mass System
|
|
Pendulum motion
|
|
Stopping Distance of a Car
|
|
Conservation of Linear Momentum
|
|
Collisions in One Dimension
|
|
Ballistic Pendulum
|
|
Comparison of Translational and Rotational Motion
|
|
Simple Harmonic Motion
|
|
Motion of a charge in Electric and Magnetic Fields
|
|
Newton's Second Law
|
|
Static Friction
|
|
Kinetic Friction
|
|
Atwood's machine
|
|
Torque
|
|
Rotational equilibrium
|
|
Newton's Second Law for Rotation
|
|
Travelling Waves
|
|
Constructive and Destructive Interference
|
|
Beats
|
|
Standing waves
|
|
Ideal Gas Law
|
|
Electric field from a point charge
|
|
Gauss' Law
|
|
Field in a Parallel-Plate Capacitor
|
|
Series and Parallel Circuits
|
|
Light bulb circuit with a switch
|
|
Multi-loop circuit
|
|
RC Circuit
|
|
Magnetic field from a long straight wire
|
|
Magnetic field from a current loop
|
|
Magnetic field from a solenoid
|
|
AC Circuit with only one circuit element
|
|
RLC Circuit
|
|
Mirrors and lenses
|
|
Refraction and total internal reflection
|
|
Vector Addition using Components
|
|
Relative Velocities
|
|
Newton's First Law and Frames of Reference
|
|
Ripple Tank Interference
|
|
Electromagnetic induction
|
|
Interference of Light
|
|
Photoelectric Effect
|
|
Bohr Atom
|