Black Holes - Lecture 4

Black Holes - Lecture 4

International Centre for Theoretical Sciences via YouTube Direct link

Conservation Laws

14 of 36

14 of 36

Conservation Laws

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Black Holes - Lecture 4

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  1. 1 Summer School on Gravitational-Wave Astronomy
  2. 2 Black Holes Lecture - 04
  3. 3 Stability of Stars
  4. 4 Stability of Matter
  5. 5 OV: Oppenheimer - Volkoff Equation of State
  6. 6 Stability of Stars in GTR
  7. 7 General Relativistic Instability
  8. 8 Laws of gravitation
  9. 9 Newtonian Gravity
  10. 10 Einstein's generalizations
  11. 11 Einstein's Zeroth Law of Gravity
  12. 12 In regions where no matter is present
  13. 13 In regions where matter is present
  14. 14 Conservation Laws
  15. 15 Einstein's field equations
  16. 16 Newtonian limit
  17. 17 Schwarzschild metric
  18. 18 The Schwarzschild Geometry
  19. 19 The Schwarzschild Radius
  20. 20 The surface of the black hole is known as the Event Horizon
  21. 21 Approximate metric at large distances from the centre.
  22. 22 Effective potential in Newtonian theory
  23. 23 Effective potential in Einstein's theory
  24. 24 ORBITS in Einstein's theory
  25. 25 The last "unstable" circular orbit is at a radius of 1.5 Rg. The velocity of the particle will be 'c'
  26. 26 Important new result
  27. 27 Gravitational Capture
  28. 28 Cross Section for Gravitational capture
  29. 29 Radial Motion of Particles
  30. 30 Falling towards a black hole
  31. 31 Time to reach Rg from r = r1
  32. 32 Falling into a black hole
  33. 33 Radial motion of photons
  34. 34 Inside the horizon
  35. 35 The Lemaitre coordinates 1933
  36. 36 Q&A

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