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Nuclear Physics
3 students

Nuclear Physics

Characteristics of Nucleus, Nuclear Model, Nuclear Reaction, Radio Activity, Particle Acceleration, Elementary Particle
Last updated 1/2025
English

What you'll learn

  • This content of Nuclear Physics basically a total discussion on Nuclear Characteristics regarding Nuclear magnetic moment, quadrupole moment , Nuclear binding,
  • This article over Nuclear Physics also contents Nuclear Shell Model, Liquid Drop Model, Nuclear reaction in respect of Q value equation with Fission and fusion
  • This discussion on Nuclear Physics again contents nuclear radio activity with alpha, beta and gamma characteristics, several mode of Particle acceleration...etc
  • This discussion is also associated with elementary particles interaction and decay process w.r.t several conservation principles and their quark compositions.

Course content

1 section • 38 lectures • 9h 44m total length
  • Introduction3:13
  • 1. Basic Characteristics of a Nuclear System23:15
  • 2. Nuclear Spin7:11
  • 3. Magnetic Moment of Nucleus9:56
  • 4. Rabi's Method of Determination of Nuclear Magnetic Moment11:36
  • 5. Quadrupole Moment of Nucleus9:09
  • 6. Fundamental Idea of Nuclear Binding Energy12:02
  • 7. Nuclear Shell Model and Magic Numbers52:03
  • 8. Principle of Liquid Drop Model8:41
  • 9. Semi Emperical Mass Formula and Mass Parabola36:02
  • 10. Principle of Natural Radio Activity21:58
  • 11. Elementary Concept of Stable and Unstable Nuclei7:32
  • 12. Laws of Radio Activity with Half Life and Mean Life13:34
  • 13. Range of Alpha Particle and Its Criteria6:40
  • 14. Energetic in Alpha Decay5:08
  • 15. Alpha Particle Scattering Theory26:04
  • 16. Gamow's Theory of Alpha Decay44:39
  • 17. Beta Energy Spectrum with Neutrino Hypothesis24:46
  • 18. Orbital Electron Capture5:03
  • 19. Concept of Pair Production or Pair Creation9:36
  • 20. Nuclear Reaction and Q-Value15:59
  • 21. Basic Concept of Nuclear Fission15:58
  • 22. Explanation of Nuclear Fission by Liquid Drop Model11:58
  • 23. Basic Concept of Nuclear Fusion10:54
  • 24. Bain Bridge Mass Spectograph7:01
  • 25. Coulomb Energy Difference between Two Mirror Nuclei9:21
  • 26. Radio Carbon Dating8:51
  • 27. Discovery of Neutron17:03
  • 28. Detection of Neutrino9:53
  • 29. Principle of Linear Accelerator11:02
  • 30. Principle of Cyclotron8:54
  • 31. Concept of Stopping Power for Energy Loss9:55
  • 32. Principle of Ionisation Chamber and GM Counter31:08
  • 33. Four Fundamental Interaction12:45
  • 34. Classification of Elementary Particles14:58
  • 35. Exact Law of Conservation16:13
  • 36. Inexact Laws of Conservation25:13
  • 37. Elementary Concept of Quark9:45

Requirements

  • The learners should require basic knowledge about a Nucleus and its content inside an Atom.

Description

Here the content of Nuclear Physics is a versatile area of the subject - 'Physics'. It contains basic Nuclear Structure along with several interactions and behavior of Nuclear Constituents like nuclear radius, nuclear charge and mass density, nuclear volume, nature of discrete energy levels of nucleus . This covers the area of Nuclear Binding, Nuclear Stability, Magnetic Moment and Quadrupole Moment of Nuclear Constituents, Nuclear Reaction including Fission and Fusion, Q value and Q value equation of Nuclear Reaction with proper estimation of Nuclear Reaction Cross section and its unit,  Explanation of Nuclear Binding and occurrence of Nuclear Magic Numbers by Nuclear Shell Model Concept, Elementary concept on Nuclear Liquid Drop Model, Explanation of Nuclear Fission by Liquid Drop Model, Basic Concept of Nuclear Radio Activity Decay including Alpha, Beta and Gamma interaction, Alpha Particle Scattering Theory, Quantum theory of Alpha Decay, Explanation of Beta decay curve by Neutrino hypothesis, Gamma interaction regarding Compton Scattering, Pair Production .. etc, Principle of Particle Accelerators like Linear Accelerator (LINAC) and Cyclotron,  Charge Particle Detectors and Elementary Particle classification in respect of four Fundamental Interactions, Exact and Inexact conservation principles on elementary particles valid Interaction and Decay Process in addition with Quark Compositions of Elementary Particles.

Who this course is for:

  • Under Graduate Students are suitable for this course.