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0:17:36
Vector addition (subtraction) on a NSEW grid (example)
0:22:17
Vector addition of 2 successive displacements on a NSEW grid (example)
0:16:54
Length contraction example (interstellar travel)
0:09:14
Length contraction (derived from time dilation)
0:13:28
Time dilation (example)
0:15:59
Relative velocity examples (relativistic, 1-D)
0:11:50
Einstein relative velocity formula
0:11:49
Introduction to relative velocity (Galileo/Newton, 1-D)
0:02:44
Faraday’s Law and the generation of electricity
0:10:22
Using Faraday’s Law to determine dB/dt from the current induced in a loop (example)
0:10:54
Faraday’s Law and induced current (example)
0:08:42
Lenz’s Law, Faraday’s Law, and induced current directions
0:12:50
Using Faraday’s Law (example)
0:08:28
Introduction to Faraday’s Law
0:09:00
Magnetic Flux
0:04:20
Area vector direction, perimeter path, and the right hand rule
0:04:47
Area Vector (introduction)
0:20:34
Magnetic field produced by 2 long currents (example)
0:07:23
Direction of the magnetic field produced by a long straight current (practice)
0:08:18
Magnetic fields and forces (practice)
0:04:35
Magnetic field direction at the center of a current loop (practice)
0:12:00
Magnetism, gravity, and Newton’s 2nd Law (full blown vector method)
0:09:03
Magnetism, gravity, and Newton’s 2nd Law
0:14:48
Deriving time dilation
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