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Engineer4Free

Dynamics

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53 items
Last updated on Dec 10, 2020
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Find position or velocity when given acceleration as a function of time
11:24
How to derive the kinematic equations (constant acceleration)
7:11
Acceleration as a function of time example (with constant acceleration)
7:13
Acceleration as a function of time example (with non-constant acceleration)
9:25
Acceleration as a function of velocity explained
5:29
Acceleration as a function of velocity example
8:24
Acceleration as a function of position explained
3:32
Acceleration as a function of position example
5:51
Relative position, relative velocity, and relative acceleration
10:33
How to solve projectile motion problems
6:12
Projectile motion example problem #1: dropping an object
5:07
Projectile motion example problem #2 - launching an object straight up
7:14
Projectile motion example problem #3: kicking a soccer ball
11:18
Projectile motion example problem #4: kicking a soccer ball off a ledge
5:17
Radians, revolutions, and degrees
8:29
How to calculate angular displacement
5:36
How to calculate angular speed/velocity
5:25
How to calculate angular acceleration
4:09
How to derive the equations of circular motion (constant angular acceleration)
12:58
How to Calculate Tangential Velocity and Acceleration
10:36
How to calculate normal acceleration and centripetal force
9:16
How to solve basic kinetics problems
8:29
How to solve kinetic pulley problems (Atwood machines)
6:43
How to solve kinetic pulley problems when a pulley is moving/translating
8:21
A block is on a slope with friction, what happens?
6:15
Kinetics pulley example problem (Atwood machine)
5:23
Kinetics pulley example problem with a friction surface
5:56
Kinetics moving pulley example problem
11:58
Work and energy formula sheet
6:03
Introduction to work (Engineering Dynamics)
4:38
Conservative and nonconservative forces
6:08
Introduction to energy (Engineering Dynamics)
6:15
Conservation of mechanical energy (no friction)
4:52
Conservation of mechanical energy (with friction)
5:54
The principle of work and energy
4:18
Mechanical Power (Engineering Dynamics)
3:56
Mechanical Efficiency (Engineering Dynamics)
3:32
What is momentum
4:18
What is an impulse
4:23
Principle of impulse and momentum
4:09
Conservation of linear momentum
5:40
What is an impact
6:49
Coefficient of Restitution
6:49
Central impact example #1
5:32
Central impact example #2
5:17
Central impact example #3
5:58
Oblique Impact Example (Engineering Dynamics)
12:39
Translation vs Rotation vs General motion (Engineering Dynamics)
6:34
Relative Motion Analysis: Vector Analysis
14:04
Relative Motion Analysis: Scalar Analysis
10:06
Instantaneous centre of zero velocity
12:21
Absolute Motion Analysis - Crankshaft
12:19
How to animate a 2D crankshaft in Krita
11:59