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Mark Van Raamsdonk @UCvgz5fx6rtmtTmSPwujuzog@youtube.com

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More from this channel (soon)


01:04
Sonata for Six Toilets
26:26
The Science of Music, Episode 1: What is Music?
03:00:26
Holography, Wormholes, and Cosmology
00:25
Hand In Space
00:44
A musical surprise
17:38
Dimensions of space and extra dimensions
01:43
Galaxy Formation Laboratory Simulation
43:14
Thermodynamics Oscillations and Waves 35: Applications: musical instruments and gravitational waves
37:17
Thermodynamics Oscillations and Waves 34: Wave superposition, standing waves, and interference
35:04
Thermodynamics Oscillations and Waves 33: travelling sinusoidal waves
42:00
Thermodynamics Oscillations and Waves 32: coupled oscillators and waves
52:28
Thermodynamics Oscillations and Waves 31: drag forces, damped and driven oscillation, resonance
32:40
Thermodynamics Oscillations and Waves 30: energy in simple harmonic motion, damped oscillations
28:28
Thermodynamics Oscillations and Waves 29: predicting oscillation frequencies for small oscillations
31:35
: displacement, velocity, and acceleration in simple harmonic motion
31:05
Thermodynamics Oscillations and Waves 27: Properties of simple harmonic motion
40:03
Thermodynamics Oscillations and Waves 26: intro to oscillations and simple harmonic motion
32:39
Thermodynamics Oscillations and Waves 25: TS diagrams, Carnot cycle, and maximum efficiency
39:32
Thermodynamics Oscillations and Waves 24: Entropy and the second law of thermodynamics
37:01
Thermodynamics Oscillations and Waves 23: refrigerators, the second law of thermodynamics
38:40
Thermodynamics Oscillations and Waves 22: heat engines and refrigerators
45:28
Thermodynamics Oscillations and Waves 21: Heat engines and efficiency, internal combustion engine
38:58
Thermodynamics Oscillations and Waves 20: isochoric, isobaric, isothermal, and adiabatic processes
42:39
Thermodynamics Oscillations and Waves 19: internal energy, free expansion, and heat
37:59
Thermodynamics Oscillations and Waves 18: Work, PV diagrams, and internal energy
34:54
Thermodynamics Oscillations and Waves 17: Work and the first law of thermodynamics
30:02
Thermodynamics Oscillations and Waves 16: the ideal gas law from molecular forces
33:25
Thermodynamics Oscillations and Waves 15: solar radiation, climate models, the Greenhouse effect
39:45
Thermodynamics Oscillations and Waves 14: Thermal radiation, emissivity
38:08
Thermodynamics Oscillations and Waves 13: Insulation, R values, convection and radiation
35:18
Physics 157 Lecture 12
34:40
Thermodynamics Oscillations and Waves 11: More on thermal conductivity
39:20
Thermodynamics Oscillations and Waves 10: heat conduction and thermal conductivity
34:18
Thermodynamics Oscillations and Waves 9: phase changes, latent heat, calorimetry
34:05
Thermodynamics Oscillations and Waves 8: Heat capacity and specific heat
28:34
Thermodynamics Oscillations and Waves 7: thermal stress in multuipart systems
40:53
Thermodynamics Oscillations and Waves 6: Volume expansion, Young's modulus, stress, and strain
32:29
Thermodynamics Oscillations and Waves 5: Linear thermal expansion and volume expansion
37:12
Thermodynamics Oscillations and Waves 4: the Kelvin scale, thermal expansion
34:30
Thermodynamics Oscillations and Waves 3: Thermometers and temperature scales, pressure.
37:17
Thermodynamics Oscillations and Waves 2: Energy, equilibrium, temperature, and heat
33:47
Thermodynamics Oscillations and Waves 1: Intro
01:00
Easter basket tensegrity sculpture
21:56
Quantum mechanics, the music of the universe
13:16
Physics of Music 67: Atoms are the musical instruments of light
13:35
Physics of Music 66: Vision vs Hearing
14:50
Physics of Music 65: Properties of Light
14:43
Physics of Music 64: What is Light? (and some basic electromagnetism)
37:32
Physics of Music 63: Synthesizers
17:13
Physics of Music 62: Analog and Digital Recording
19:54
Physics of Music 61: Speakers and Microphones
05:19
Physics of Music 60: vibrato
14:34
Physics of Music 59: effects of helium on the human voice
12:50
Physics of Music 57: the human voice 2: vocal tract and formants
18:00
Physics of Music 56: Human voice 1: the vocal folds, modal vs falsetto
20:32
Physics of Music 55: Brass instruments
05:35
Physics of Music 54: Flutes: driving oscillations with an air jet
08:02
Physics of Music 53: Difference between loud and soft playing (for saxophone)
11:13
Physics of Music 52: Woodwind instruments: Driving oscillations with reeds (1)
28:17
Physics of Music 51: Woodwind instruments: basic physics, register holes