11:43
Introduction to Displacement and the Difference between Displacement and Distance
Flipping Physics
11:45
Introduction to Velocity and Speed and the differences between the two.
18:01
Why "Show All Your Work"?
12:53
Average Velocity Example Problem with Three Velocities
5:35
Velocity and Speed are Different: Example Problem
12:39
Understanding and Walking Position as a function of Time Graphs
15:11
Finding Average Speed for Pole Position: Example Problem - Not as easy as you may think
13:00
"Pillars of Creation" Explanation for Kate
10:53
Introduction to Acceleration with Prius Brake Slamming Example Problem
9:52
A Basic Acceleration Example Problem and Understanding Acceleration Direction
24:53
Walking Position, Velocity and Acceleration as a Function of Time Graphs
6:42
Introduction to Uniformly Accelerated Motion with Examples of Objects in UAM
11:41
Introductory Uniformly Accelerated Motion Problem - A Braking Bicycle
17:02
Toy Car UAM Problem with Two Different Accelerations
5:58
Understanding Uniformly Accelerated Motion
12:51
Understanding Instantaneous and Average Velocity using a Graph
7:58
Graphical Uniformly Accelerated Motion (UAM) Example Problem
3:53
Experimentally Graphing Uniformly Accelerated Motion
13:18
Derivative Introduction
7:23
The Derivative and Uniformly Accelerated Motion Equations
11:14
The Derivative and a Demonstration of Position, Velocity and Acceleration
12:12
Introduction to Free-Fall and the Acceleration due to Gravity
6:01
Analyzing the Apollo 15 Feather and Hammer Drop - A Basic, Introductory Free-Fall Problem
12:11
Dropping a Ball from 2.0 Meters - An Introductory Free-Fall Acceleration Problem
4:56
Graphing the Drop of a Ball from 2.0 Meters - An Introductory Free-Fall Acceleration Problem
10:46
Throwing a Ball up to 2.0 Meters & Proving the Velocity at the Top is Zero
1:58
The Drop and Upward Throw of a Ball are Very Similar
3:24
Creating a Position vs. Time Graph using Stop Motion Photography
10:22
A Free-Fall Problem That You Must Split Into Two Parts
4:08
Dropping Dictionaries Doesn't Defy Gravity, Duh!
12:00
Don't Drop Your Camera 5.0 Seconds After Liftoff
7:19
Common Free-Fall Pitfalls
10:27
Introduction to Tip-to-Tail Vector Addition, Vectors and Scalars
11:34
Introductory Tip-to-Tail Vector Addition Problem
5:59
How to use Cardinal Directions with Vectors
8:23
Introduction to Vector Components
10:52
Introductory Vector Addition Problem using Component Vectors
4:24
Using a Data Table to Make Vector Addition Problems Easier
7:57
A Visually Complicated Vector Addition Problem using Component Vectors
12:31
Component, Unit, and R Position Vectors
4:46
Using the R Position Vector to find Velocity and Acceleration
6:58
Introduction to Projectile Motion
9:42
(Part 1 of 2) An Introductory Projectile Motion Problem with an Initial Horizontal Velocity
(Part 2 of 2) An Introductory Projectile Motion Problem with an Initial Horizontal Velocity
9:33
Nerd-A-Pult - An Introductory Projectile Motion Problem
Nerd-A-Pult - Measuring Initial Velocity
5:52
Nerd-A-Pult using Unit Vectors
10:30
Nerd-A-Pult #2 - Another Projectile Motion Problem
9:32
Nerd-A-Pult #2 using Unit Vectors
8:53
Understanding the Range Equation of Projectile Motion
7:31
Deriving the Range Equation of Projectile Motion
A Range Equation Problem with Two Parts
4:14
The Classic Bullet Projectile Motion Experiment
6:36
Demonstrating the Components of Projectile Motion
2:31
Skateboarding Frame of Reference Demonstration
9:58
Introduction to Relative Motion using a Quadcopter Drone (UAV)
11:58
An Introductory Relative Motion Problem
9:34
An Introductory Relative Motion Problem with Vector Components
8:45
Relative Motion Problem: Solving for the angle of the moving object
4:34
Memorizing vs. Understanding in Physics
15:16
AP Physics C: Kinematics Review (Mechanics)
6:51
AP Physics C: Integrals in Kinematics Review (Mechanics)