7:10
Introduction to Work with Examples
Flipping Physics
5:57
Introductory Work Problem
15:11
Work as the Dot Product
18:31
Integral Introduction via Work
9:35
Hooke's Law Introduction - Force of a Spring
5:46
Determining the Spring Constant, k, with a Vertically Hanging Mass
5:51
The Human Spine acts like a Compression Spring
5:26
Introduction to Kinetic Energy with Example Problem
5:49
Introduction to Gravitational Potential Energy with Zero Line Examples
7:18
Introduction to Elastic Potential Energy with Examples
9:27
Work done by a Spring - Deriving Elastic Potential Energy
8:26
Introduction to Conservation of Mechanical Energy with Demonstrations
8:50
Introductory Conservation of Mechanical Energy Problem using a Trebuchet
8:49
Conservation of Energy Problem with Friction, an Incline and a Spring by Billy
3:14
Work due to the Force of Gravity on an Incline by Billy
3:24
The Energy Song by Bo
4:59
Introduction to Mechanical Energy with Friction
8:59
Introductory Work due to Friction equals Change in Mechanical Energy Problem
5:38
Work due to Friction equals Change in Mechanical Energy Problem by Billy
7:54
Deriving the Work-Energy Theorem using Calculus
6:11
Work Energy Theorem Example Problem
12:45
Work-Energy Theorem Problem by Billy
10:24
Finding the Force on a Ball from a Dent
15:13
Conservative and Nonconservative Forces
8:14
Conservative Force and Potential Energy
7:15
Energy Transferred Into and Out of a System
13:38
Energy Systems Clarified
14:52
Example of Energy Transferred Into and Out of a System
5:52
Introduction to Power
11:24
Average and Instantaneous Power Example
9:45
Graphing Instantaneous Power
11:25
Average Power Delivered by a Car Engine - Example Problem
6:59
Calculating Average Drag Force on an Accelerating Car using an Integral
5:17
Instantaneous Power Delivered by a Car Engine - Example Problem
5:23
Power and Calculus
10:27
Power using Derivative and Unit Vectors - Example
4:54
From Power to Work using an Integral - Example
16:49
AP Physics C: Work, Energy, and Power Review (Mechanics)
6:51
AP Physics C: Integrals in Kinematics Review (Mechanics)