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Videos

The videos below are in the QuickTime stream video (MOV) format or the Real Player (not stream) format (RM). Troubles uploading the streaming video are usually solved by updating the viewing software (QuickTime , Real Player).

USED IN L # TOPICS AND ACTIVITY OTHER INFO
Lecture #4 Temperature and Heat and Thermal Properties of Matter: Heat Capacity of Lead Activity (40 minutes, MOV, RM).
Lecture #5 First Law of Thermo and Efficiency of Engines: Lecture (1hour and 4 minutes, MOV).
Lecture #6 First Law of Thermo and Efficiency of Engines: Lecture Part I (20 minutes, MOV), Lecture Part II (50 minutes, MOV).
Lecture #7 Periodic motion: Lecture (1 hour and 14 minutes, MOV).
Lecture #8 Periodic motion (SHM): Lecture (1 hour and 24 minutes, MOV).
Lecture #10 Periodic motion (SHM): Lecture (1 hour and 33 minutes, MOV).
Lecture #12 Periodic motion (Forced Oscillations): Lecture Part I (mov, 30 minutes, MOV), Lecture Part II (40 minutes, MOV).
Lecture #13 Fourier Analysis: Lecture (1 hour and 16 minutes, MOV).
Lecture #14 Waves (1D): Lecture (1 hour and 13 minutes, MOV).
Lecture #15 Waves (1D): Lecture (1 hour and 25 minutes, MOV).
Lecture #16 Waves (1D): Pressure Standing Wave Activity (7 minutes video, MOV, RM), Lecture (1 hour and 11 mintues, MOV).
Lecture #17 Waves in higher dimensions: Plane Wave Propagatoin Activity (10 minutes, RM), Lecture (1 hour and 15 minteus, MOV).
Lecture #20 Sound in a medium: Chocollate effect (by Glenn Agnolet) (14 minutes, MOV, RM).
Lecture #20 Sound in a medium (Light Propagation): Lecture ( 57 minutes, MOV, RM).
Lecture #21 Light Dispersion and Rainbows: Lecture (1 hour and 11 minutes, MOV, RM)
Lecture #22 Interference: Light Interference Activity (52 minutes, MOV, RM), Light Interference Activity Follow up lecture (26 minutes video, MOV, RM).
Lecture #23 Light Diffraction and Resolution Lecture (1 hour and 10 minutes RM).
Lecture #24 Light Polarization and Rainbows: Lecture (1 hour and 17 minutes, MOV, RM)
Lecture #25 Geometric Optics I: Lecture (1 hour and 11 minutes, MOV).
Lecture #27 Geometric Optics II: Lecture (1 hour and 12 minutes, MOV).