5:04
Introduction to Circular Motion and Arc Length
Flipping Physics
4:16
Defining Pi for Physics
3:44
Introductory Arc Length Problem - Gum on a Bike Tire
3:00
Angular Velocity Introduction
5:40
Introductory Angular Velocity Problem - A Turning Bike Tire
2:27
Angular Acceleration Introduction
5:26
Angular Accelerations of a Record Player
6:34
Uniformly Angularly Accelerated Motion Introduction
3:43
Introductory Uniformly Angularly Accelerated Motion Problem - A CD Player
3:57
Human Tangential Velocity Demonstration
3:39
Introductory Tangential Velocity Problem - Mints on a Turntable
6:50
Tangential Acceleration Introduction with Example Problem - Mints on a Turntable
5:56
Demonstrating the Directions of Tangential Velocity and Acceleration
6:20
Centripetal Acceleration Introduction
5:59
Introductory Centripetal Acceleration Problem - Cylindrical Space Station
5:25
Centripetal Force Introduction and Demonstration
7:31
Introductory Centripetal Force Problem - Car over a Hill
3:49
What is the Maximum Speed of a Car at the Top of a Hill?
4:57
The Scalar Nature of Variables in Rotational Motion Equations
6:47
Mints on a Rotating Turntable - Determining the Static Coefficient of Friction
5:06
Determining the Force Normal on a Toy Car moving up a Curved Hill
3:58
Demonstrating Why Water Stays in a Bucket Revolving in a Vertical Circle
6:13
Analyzing Water in a Bucket Revolving in a Vertical Circle
5:57
Minimum Speed for Water in a Bucket Revolving in a Vertical Circle
6:23
The Right Hand Rule for Angular Velocity and Angular Displacement
5:20
Differences between Angular, Tangential, & Centripetal Acceleration / A Tale of 3 Accelerations
9:23
Conical Pendulum Demonstration and Problem