Vibrations and Waves

Vibrations and Waves

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Lecture 9 - "The" Wave Equation and a Vibrating String

18 of 38

18 of 38

Lecture 9 - "The" Wave Equation and a Vibrating String

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Vibrations and Waves

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  1. 1 Ph2a Promo: Vibrations and Waves
  2. 2 Lecture 1 - Simple Harmonic Motion
  3. 3 Recitation 1 - Why Vibrations and Waves Matter
  4. 4 Lecture 2 - The Pendulum and the LC Circuit
  5. 5 Recitation 2 - Simple Harmonic Motion in Action
  6. 6 Lecture 3 - Damped and Driven Harmonic Oscillator
  7. 7 Recitation 3 - Damped Harmonic Motion - I
  8. 8 Lecture 4 - Three Cases of Damped Motion
  9. 9 Recitation 4 - Damped Harmonic Motion - II
  10. 10 Lecture 5 - Steady State Motion of a Forced Damped Harmonic Oscillator
  11. 11 Recitation 5 - Forced Harmonic Motion
  12. 12 Lecture 6 - Energy and Power Dissipation; Coupled Oscillators
  13. 13 Recitation 6 - Forced Harmonic Motion in Action
  14. 14 Lecture 7 - Solving the Coupled Oscillator Equation
  15. 15 Recitation 7 - Coupled Oscillators
  16. 16 Lecture 8 - Forced Coupled Oscillation; Traveling Waves
  17. 17 Recitation 8 - Coupled Oscillations in Action
  18. 18 Lecture 9 - "The" Wave Equation and a Vibrating String
  19. 19 Recitation 9 - The Phenomenon of Wave Propagation
  20. 20 Lecture 10 - Where Things Begin and End Boundary Conditions and Discontinuities
  21. 21 Recitation 10 - Continuum Normal Modes and Standing Waves
  22. 22 Lecture 11 - Standing Waves
  23. 23 Recitation 11 - Fourier Analysis in Action
  24. 24 Lecture 12 - Fourier Analysis and then More Dimensions
  25. 25 Recitation 12 - Standing Waves and Boundary Conditions in Two Dimensions
  26. 26 Lecture 13 - Standing Waves Demonstrated and Analysis of the Circular Drumhead
  27. 27 Recitation 13 - Interference and Sound Channels
  28. 28 Lecture 14 - Interference of Waves and Electromagnetic Waves
  29. 29 Recitation 14 - Interference in Action
  30. 30 Lecture 15 - Polarization; Huygen’s Principle; Diffraction
  31. 31 Recitation 15 - Polarization
  32. 32 Lecture 16 - Double Slits and Circular Apertures
  33. 33 Recitation - 16 - Introduction to Dispersion of Waves
  34. 34 Lecture 17 - Fresnel Diffraction, then on to Dispersion
  35. 35 Recitation 17 - Thanksgiving: A Glimpse into the Heart of Physics
  36. 36 Lecture 18 - Dispersion Demonstrated
  37. 37 Recitation 18 - Final Review
  38. 38 Lecture 19 - The Bandwidth Theorem

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