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The Feynman lectures on physics : quantum mechanics / Richard P. Feynman

By: Contributor(s): Material type: TextTextSeries: ; 3Publication details: Narosa Publishing House, New Dehli : 2007 Description: xxvi, 382 pISBN:
  • 9788185015842
Subject(s): DDC classification:
  • 537 F438
Contents:
1. Atoms in motion 2. Basic physics 3. The relation of physics to other science 4. Conservation of energy 5. Time and distance 6. Probability 7. The theory of gravitation 8. Motion 9. Newton’s laws of dynamics 10. Conservation of momentum 11. Vectors 12. Characteristics of force 13. Work and potential energy 14. Work and potential energy(conclusion) 15. The special theory of relativity 16. Relativistic energy ad momentum 17. Space-time 18. Rotation in two dimension 19. Centre of mass: moment of inertia 20. Rotation in space 21. The harmonic oscillator 22. Algebra 23. Resonance 24. Transients 25. Linear systems and review 26. Optics: the principle of least time 27. Geometrical optics 28. Electromagnetic radiation 29. Interference 30. Diffraction 31. The origin of the refractive index 32. Radiation damping, light scattering 33. Polarization 34. Relativistic effects to radiation 35. Color vision 36. Mechanisms of seeing 37. Quantum behavior 38. The relation of wave and particle viewpoints 39. The kinetic theory of gases 40. The principles of statistical mechanics 41. The Brownian movement 42. Applications of kinetic theory 43. Diffusion 44. The laws of thermodynamic 45. Illustrations of thermodynamics 46. Ratchet and pawl 47. Sound, the wave equation s 48. Beats 49. Modes 50. Harmonics 51. Symmetry in physical law
List(s) this item appears in: Physics
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Books Books UE-Central Library 537 F438 (Browse shelf(Opens below)) Available T258

Includes Feynman's Epilogue and appendix

1. Atoms in motion
2. Basic physics
3. The relation of physics to other science
4. Conservation of energy
5. Time and distance
6. Probability
7. The theory of gravitation
8. Motion
9. Newton’s laws of dynamics
10. Conservation of momentum
11. Vectors
12. Characteristics of force
13. Work and potential energy
14. Work and potential energy(conclusion)
15. The special theory of relativity
16. Relativistic energy ad momentum
17. Space-time
18. Rotation in two dimension
19. Centre of mass: moment of inertia
20. Rotation in space
21. The harmonic oscillator
22. Algebra
23. Resonance
24. Transients
25. Linear systems and review
26. Optics: the principle of least time
27. Geometrical optics
28. Electromagnetic radiation
29. Interference
30. Diffraction
31. The origin of the refractive index
32. Radiation damping, light scattering
33. Polarization
34. Relativistic effects to radiation
35. Color vision
36. Mechanisms of seeing
37. Quantum behavior
38. The relation of wave and particle viewpoints
39. The kinetic theory of gases
40. The principles of statistical mechanics
41. The Brownian movement
42. Applications of kinetic theory
43. Diffusion
44. The laws of thermodynamic
45. Illustrations of thermodynamics
46. Ratchet and pawl
47. Sound, the wave equation s
48. Beats
49. Modes
50. Harmonics
51. Symmetry in physical law

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