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Unit C. Wave behaviour

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C.1 Simple harmonic motion

  • Find Average speed of oscillating particle in one cycle
    02:38
  • 02:17
  • How velocity & Acceleration of SHM are related (for HL)
    03:30
  • 02:41
  • Find maximum acceleration of SHM from oscillation graphs
    02:35
  • All Motion graphs of simple harmonic motion
    02:48
  • How Simple pendulum is simple harmonic motion
    03:11
  • Time period of hanging mass spring system
    01:39
  • Calculate Elastic potential energy of spring (for HL)
    02:24
  • Relation between average speed of SHM with frequency
    01:55
  • Find positions in SHM where kinetic and potential energy are equall (for HL)
    03:01
  • Magnitude of acceleration and its direction of SHM
    03:13
  • Ratio of time periods of mass spring system when masses are changed
    03:05
  • Displacement & Acceleration graph of SHM
    02:18
  • Kinetic energy – time graph of horizontal mass-spring system (for HL)
    03:08
  • Uniform circular motion and Simple harmonic motion
    02:45
  • Sinusoidal equation of velocity of SHM (for HL)
    04:58
  • 01:17
  • Work done for moving object from x to x/4 of oscillating object
    03:03
  • Charactertics of SHM. Explained from diagram
    02:44
  • Maximum and minimum velocity of SHM (for HL)
    01:44
  • Restoring force and displacement of SHM
    03:07
  • Find work done when elastic wire contracts (for HL)
    03:45
  • 03:59
  • Time period of Simple pendulum on Earth and Moon
    02:24
  • 03:17
  • Resultant force at equilibrium in simple pendulum
    02:41
  • Find speed of oscillating object in the middle of equilibrium and extreme positions (for HL)
    02:33
  • Calculate Time period and Energy of simple pendulum (for HL)
    02:33

C.2 Wave model

C.3 Wave phenomena

C.4 Standing waves and resonance

C.5 Doppler effect

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