Bsc/Msc Physics
Part 1
Unit 1: Crystal Structure
- Explain bravais lattice in two and three Dimension?
- Explain the simple crystal Structure of Cscl, NaCl, ZnS, Diamond and Hexagonal closed packed structures?
- Find out number of atoms in per unit cell and coordination number in simple crystal Structure?
Unit 2: Crystal Diffraction by X—Ray
- What is reciprocal lattice of crystal?
- Prove that the volume of unit cell of reciprocal lattice is inversely proportional to the volume of unit cell of direct lattice?
- Find out the reciprocal lattice and translation vector for BCC/FCC/SCC lattice?
- Derive the relation for translation vector between direct and reciprocal lattice?
- What is brillouin zone explain it?
- Explain Bragg Diffraction condition in terms of reciprocal lattice vector?
- Explain the reciprocal lattice of bcc lattice?
- Explain the reciprocal lattice of fcc lattice?
- Give the relation between crystal lattice axes and crystal reciprocal lattice axes?
- Find the primitive vectors for the reciprocal lattice of FCC/ BCC lattice?
Unit 3: Elastic Properties of Solids
- Define stress and strain. Explain their components in a solid?
- Explain elastic constants for isotropic body?
- What are elastic compliance and stiffness constants? How are they related?
- Derive the expression for elastic energy density in an isotropic solid?
- Explain elastic energy density in terms of stiffness constant?
- Discuss the reduction of the number of elastic constants in different symmetry conditions?
- Explain the concept of elastic stiffness constants for an isotropic body?
- What is the elastic constant for cubic isotropic bodies? How is it determined experimentally?
- What is elastic wave? Find out elastic wave in (100) direction?
- Derive the equation for elastic waves in solids and discuss wave propagation in the (100) direction?
- Explain the final velocity of elastic waves of a cubic crystal in (100) direction?
Unit 4: Lattice Vibration and Phonons
- Describe the lattice dynamics/ Vibration of a diatomic linear lattice?
- Explain the optional and acoustic mode of vibration?
- What is a lattice vibrational spectrum? How is it obtained?
- Explain the concept of phonons. How do they contribute to the thermal properties of solids?
- What is Phonon? Explain the angular frequency of Phonon in solids?
- Derive the expression for the momentum of a phonon?
- Explain the inelastic scattering of photons by phonons. Give an example?
- How does inelastic scattering of neutrons by phonons help in understanding lattice vibrations?
- Discuss the inelastic scattering of X-rays and its significance in solid-state physics?
Unit 5: Thermal Properties and Band Theory of Solids
- Explain the thermal conductivity of solids/crystals?
- What is anharmonicity? How does it affect the thermal expansion of solids?
- Derive the equation of state for a solid and explain its significance?
- Define the Grüneisen constant and discuss its role in thermal expansion?
- Explain the band theory of solids. How does it classify materials into conductors, semiconductors, and insulators?
- What is the concept of effective mass in semiconductors? How is it determined?
- Define Fermi surfaces and discuss their importance in electronic properties of solids?
- What is the anomalous skin effect? How does it influence electrical conductivity?
- Explain the De Haas-van Alphen effect and its applications in solid-state physics?
- Describe the phenomenon of cyclotron resonance and its applications?
- What is magnetoresistance? Discuss its significance in modern electronic devices?
Part 2
Unit 1: Superconductivity
- What is a superconducting state? What are its key characteristics?
- Explain the concept of persistent current in superconductors?
- What is the critical temperature in superconductors? How is it determined?
- Describe the Meissner effect? Why is it important for superconductivity?
- Explain the thermodynamics of superconducting transitions?
- Derive the London equation and explain penetration depth?
- What are coherence length and its significance in superconductors?
- Differentiate between Type I and Type II superconductors?
- Explain the BCS theory of superconductivity?
- What are AC and DC Josephson effects?
- What is Josephson effect? Describe Josephson Tunneling and its applications?
Unit 2: Magnetism
- What is Weiss theory of ferromagnetism?
- Explain the Heisenberg model in the context of magnetism?
- Describe the molecular field theory of ferromagnetism?
- What are domain walls? How do they contribute to magnetic properties?
- Explain Bloch wall energy and its significance?
- What are spin waves and magnons?
- State and explain Curie-Weiss law for magnetic susceptibility?
- Differentiate between ferrimagnetism and antiferromagnetism?
Unit 3: Imperfections in Crystals
- What are the different types of atomic packing imperfections?
- Explain point defects in crystals with examples?
- What are interstitial defects? How do Schottky and Frenkel defects differ?
- Describe lattice vacancies and color centers in crystals?
- What are F centers and F' centers? How are they formed?
- Explain the coagulation and production of color centers and V centers?
- What are line defects in crystals? Give examples?
- Explain edge and screw dislocation in crystalline solids?
- Describe the mechanism of plastic deformation in solids?
- How do stress and strain fields affect dislocations in solids?
- Explain the Burgers vector and its significance in crystal defects?
- What is shear strength in single crystals? How does it influence material properties?
Unit 4: Thin Films
- What are thin films? How are they different from bulk materials?
- Explain the role of surface topography in thin film studies?
- How does a multiple beam interferometer help in thin film analysis?
- What are the conditions for accurately determining step height in thin films?
- Explain the importance of Fizeau fringes in the measurements?
- Explain how film thickness is measured using Fizeau fringes?
- What are the factors affecting the electrical conductivity of thin films?
- Derive an expression for electrical conductivity in thin films?
- Derive the expression for the measurement of electrical conductivity of thin films? Determine the galvanomagnetic coefficient?
- Explain the Hall effect and their applications?
- What is the Hall coefficient? How does it apply to thin films?
- Explain the quantum size effect in thin films?
Unit 5: Nanostructures
- What are the quantum dots?
- What are carbon nanotubes? Classify them?
- What are nanostructures? How are they classified?
- Discuss the properties of nanostructured materials?
- What are nanoparticles? Explain their uses?
- Explain the different methods of preparing nanomaterials?
- How does plasma-enhanced chemical vapor deposition work?
- What is electro-deposition, and how is it used in nanotechnology?
- Describe the structure of single-wall carbon nanotubes?
- Explain the classification of carbon nanotubes based on their properties?
- What are chiral vectors in carbon nanotubes?
- Define translational vector T and symmetry vector R in nanotube structures?
- What is the concept of the Brillouin zone in nanomaterials?
- Discuss the electronic properties of nanostructures?
- Explain the mechanical behavior of nanomaterials?
- How do thermal and phonon properties affect nanomaterials?