Bsc/Msc Physics
Unit 1: Nuclear Interaction and Nuclear Reaction
- Explain the nuclear forces?
- What is the exchange force theory? Discuss its significance in nuclear interactions?
- Describe the role of tensor forces in nuclear binding?
- Explain the meson theory of nuclear forces?
- Discuss the concept of neutron-proton scattering at low energy and determine the scattering length?
- How does spin dependence affect nuclear forces?
- Explain direct and compound nuclear reaction mechanisms with examples?
- What is the reciprocity theorem? Derive its expression?
Unit 2: Accelerators of Charged Particles
- Describe the principle and working of a cyclotron with a labeled diagram?
- What is phase stability? Explain its role in accelerators?
- Discuss the frequency modulation in synchro cyclotrons?
- Explain the working of a betatron and its applications?
- What is an electron synchrotron? How does it accelerate charged particles?
- Describe the principle of a linear accelerator (Linac) and its advantages?
- Compare the working of different types of particle accelerators?
- Explain in detail the principle and working of a synchrocyclotron?
Unit 3: Nuclear Models
- Explain the liquid drop model and derive the semi-empirical mass formula?
- Discuss Bohr-Wheeler’s theory of nuclear fission?
- What is the shell model? Explain its assumptions and limitations?
- Describe the concept of spin-orbit interaction in nuclear structure?
- Explain the significance of magic numbers in nuclear physics?
- What is nuclear quadrupole moment? Discuss its physical significance?
- Derive an expression for the quadrupole moment of a nucleus and explain special cases?
- Write a detailed note on nuclear isomerism?
Unit 4: Nuclear Decay and Elementary Particles
- Explain β decay and its different types?
- Discuss the characteristics of the β ray spectrum?
- What is the Fermi theory of β decay? Derive its expression for transition probability?
- Explain the selection rules for β decay?
- Discuss the concept of parity and its violation in weak interactions?
- Explain multipole radiation and its role in nuclear transitions?
- What is internal conversion in nuclear decay? Describe the process?
- Write about the parity in β decay and its significance?
- Discuss the symmetry schemes of elementary particles, including SU(3)?
- Discuss mass-charge-spin interaction and the average lifetime of elementary particles?
Unit 5: Elementary Particles
- Classify elementary particles based on their properties and interactions?
- Explain the fundamental interactions governing particle physics?
- What are the key parameters of elementary particles? Discuss their importance?
- Explain different symmetry and conservation laws in nuclear reactions?
- What is SU(3) symmetry? Discuss its role in particle classification?
- Describe the concept of charge, mass, and spin interactions in elementary particles?
- Explain the different conservation laws governing nuclear and particle interactions/ Elementary Particles?
- Write a detailed note on the properties and behavior of K-mesons?
- Explain the working principle of a betatron.
- Discuss the principle of ‘Phase Stability’ in accelerators?
- Explain in detail the Shell Model and state clearly the assumption of the shell model of a nucleus?