M P BHOJ (OPEN) UNIVERSITY, BHOPAL ASSIGNMENT QUESTION PAPER

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1 Paper - I - Quantum Mechanics Q.1 Explain Erhenfest theorem. (5) Q.2 Explain Fermi Golden rule. (5) Q.3 Discuss Wein - gorden equation & drive equation. (5) Q.4 Write a short note on Exchange degeneracy of indistinguishable particles. Q.5 Obtain Einsteins A & B coefficient. Q.6 Describe WKB approximation. Q.7 Define angular momentum.discuss spectrum of J 2 & J 3. Q.8 Write the properties of direc matrices. Q.1 Explain orthogonality, normality, & closume property of eigenfunction. (5) Q.2 Explain Born oppenheimer approximation of LCAO. (5) Q.3 (a) Define eigen values & eigen vectors of angular momentum. (b) Explain conservation of angular momentum. (5) Q.4 Write a short note on Degenerate time independent perturbation theory. Q.5 Explain Zeeman effect. Q.6 Discuss scattering by a control potential wave analysis & phase shift method. Q.7 Write short note on Bose einstein statistics. Q.8 Explain difficulties with the hole theory.

2 Paper - II - Solid State Physics and Material Science Q.1 What do you understand by polarisation.discuss electronic and ionic polarisation.(5) Q.2 Explain Kronig - penny model. (5) Q.3 What are the deffects in crystals. Discuss point defect & colour centres. (5) Q.4 Discuss Fuchs - sondheimer model. Q.5 Write a short note on EPR. Q.6 What are the thin films.explain electrical conduction in thin film. Q.7 Explain Lorentz internal field. Q.8 Discuss Hall effect. Q.1 Write the postulates for debye theory describing specfic heat. Otain an expression for specific heat. (5) Q.2 Write the difference between conductor, insulater and semiconductor. (5) Q.3 Discuss Mossbaurer effects &with the help of this determine the nature of interatomic forces in crystalline solid. (5) Q.4 Write short note on ferromagnetic, antiferromagnetic,ferrimagnetic & ferrmites substance. Q.5 Write short note on dielectric losses & relaxation time. Q.6 Explain diffusion, ionic conductivity and luminescence. Q.7 Write short note on NMR. Q.8 Explain Microscopic and macroscopic description of the dielectric behaviour.

3 Paper - III - Nuclear Physics and Partical Physics Q.1 Describe the Binding energy curve for nuclei. (5) Q.2 Explain n-p & p-p scattering. (5) Q.3 Derrived Briet - Wegner single level formula. (5) Q.4 Explain the liquid drop model of nuclear fission. Q.5 Write short note on Leptons & Baryon formula. Q.6 Discuss semi iemprical mass formula. Q.7 Discuss parity invariance & time reversal. Q.8 Discuss concopt of nelicity. Q.1 What is neutrino hypothesis? Describe the fermi theory of β - decay. (5) Q.2 Discuss Yukawa theory of nuclear forces. (5) Q.3 Explain the energy levels and magic number following nuclear shall model.describe spin orbit coupling. (5) Q.4 Discuss Gelleman oxebo mass formula. Q.5 Obtain quadrupole moment for nuclei. Q.6 What are multipole transitions. Q.7 Explain Bolar s theory of nuclear reaction for compound nucleus. Q.8 What are elementry particle.discuss charge spin stangeness of individual particle.

4 Paper - IV - Advanced Solid State Physics Q.1 Expalin transverse optical modes in a plasma. (5) Q.2 What are the super conductors? Explain its properties. (5) Q.3 Discuss two band modal magneto resistance. (5) Q.4 Explain quantum theory of para magnetism. Q.5 Explain nuclear magnetic resonance. Q.6 Explain De Hass - Van Alphen effect. Q.7 Discuss Meissner effect. Q.8 Write short note on magnetoresistance. Q.1 Explain BCS theory of super conductivity. (5) Q.2 Explain the method of construction of the fermi surface. What are the experimental techniques used to study ferrm surface. (5) Q.3 Explain para, dia, ferro, antiferro and ferri magnetism.obtain an expression and susceptibility for diamagnetic material. (5) Q.4 Explain Josephson effect. Q.5 Obtain Boltzmann equation for electric conductivity. Q.6 Explain Hall effect. Q.7 Write short note magnetro resistance. Q.8 Explain neclear quadrupole resonance.

5 CLASS : M. Sc. Physics Final SUBJECT : Physics Paper - Optional- Digital Electronics 3- l=h; dk;z mùkjiqflrdk ds vafre i`"b ij lacaf/kr fo"k; dh laiuu laidz d{kkvksa dh frffk;ksa,oa ijke'kznkrk ds uke,oa in dk 5- l=h; dk;z mùkjiqflrdk,a tek djus dh vafre frffk 6- l=h; dk;z mùkjiqflrdk,a tek djus dh jlhn vo'; izkir dj ysaa 20 Q.1. Describe the basic construction and operation of a binary ripple counter. Draw the logic diagram D2P pinout and truth table for a A. (6) Q.2. What are digital display systems? Explain the working principle of clipper. (6) Q.3. Explain the block diagram of 4-bit D/A converter. What is the resolution of a 9-bit D/A converter network? What is this resolution expressed as a percent? If the full sale output voltage of this converter is +5V, what is the resolution in Volts? (6) Q.4. Use operational amplifier to work as adder. Q.5. Describe the working of an integrator. Q.6. What is dual slope A/D converter? Q.7. Discuss the working principle of 8085 microprocessor. Q.1. a) Convert decimal 23.6 to a binary number. b) Show that the logic circuit ABBA+=Y. Next, simplify this Boolean equation and the corresponding logic circuit. (6) Q.2. What is clock waveform? Explain its synchronous operation. Construct a TTL compatible clock and explain its circuit diagram. (6) Q.3. What is flip flop electronic circuit? Describe Nor-gate RS flip flop with circuit diagram and with table. Use the pinout diagram for a 54/7427 triple 3-input Nor gate and show how to connects a simple RS flip flop. (6) Q.4. Convert decimal 65,535 to its hexadecimal and binary equivalents. Q.5. What is a Karnaugh map? Convert a three-variable and four variable Karnaugh map. Q.6. Explain the electronic circuit and working of Schmitt trigger. Q.7. Describe the function and truth table of JK flip-flops.

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