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1cse-2026-subject-08-013
CSE 2026Paper II15 Marks

What is the photovoltaic effect? What are the processes that are required to obtain a useful power output from photon interactions in a semiconductor? List the factors that affect the efficiency of a solar cell.

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2cse-2026-subject-08-006
CSE 2026Paper II15 Marks

Explain the principle and working of the Laue's diffraction method. Comment on the origin of Laue spots and the utility of Laue's diffraction pattern.

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3cse-2026-subject-08-008
CSE 2026Paper II5 Marks

Discuss the limitations of the quantum theory of diamagnetism.

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4cse-2026-subject-08-004
CSE 2026Paper II10 Marks

Explain briefly the two-fluid model proposed by the London brothers and obtain the expressions for the penetration depth and the number of superelectrons in a superconducting specimen.

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5cse-2026-subject-08-003
CSE 2026Paper II5 Marks

The energy near the valence band edge of a crystal is given by E = -10^{-39} k^2\text{ J}\cdot\text{m}^2. An electron with wave vector 10^{10}\hat{k}_x\text{ m}^{-1} is removed from an orbital in the completely filled valence band. Determine its effective mass and momentum.

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6cse-2026-subject-08-005
CSE 2026Paper II5 Marks

What are the different methods used to increase the probability of exposure for the atomic planes with right orientation to X-rays in the X-rays diffraction studies?

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7cse-2026-subject-08-001
CSE 2026Paper II2 Marks

What is the effective mass of an electron?

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8cse-2026-subject-08-007
CSE 2026Paper II5 Marks

What is diamagnetism? Why do diamagnetic materials have negative magnetic susceptibility?

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9cse-2026-subject-08-011
CSE 2026Paper II10 Marks

Discuss the Debye model of lattice specific heat. What are the limitations of the Debye model?

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10cse-2026-subject-08-012
CSE 2026Paper II5 Marks

At very low temperatures, the specific heat of rock salt varies with temperature according to the Debye T^3 law. The Debye temperature for rock salt is 281\text{ K}. How much heat will be required to raise the temperature of 2\text{ kilo-mol} of rock salt from 10\text{ K} to 50\text{ K}?

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11cse-2026-subject-08-010
CSE 2026Paper II20 Marks

The input signal as shown in Figure (I) is applied to the comparator circuit given in Figure (II). Make a sketch of the output signal showing its proper relationship to the input signal. Assume that the maximum output levels of the op-amp are \pm 12\text{ V}.

Physics Diagram cse-2026-p2-q7b-fig-1
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12cse-2026-subject-08-009
CSE 2026Paper II10 Marks

Draw a diagram of magnetic susceptibility as a function of temperature. Pay attention to the relative scales in your diagram so that the relative strengths of the magnetic phenomena are presented.

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13cse-2026-subject-08-002
CSE 2026Paper II3 Marks

What are the physical reasons that the effective mass of an electron can be infinite and negative?

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14cse-2026-subject-07-004
CSE 2026Paper II20 Marks

By considering the three-dimensional harmonic oscillator potential, explain the energy levels of nucleons inside the nucleus. Also, derive the zero-point energy of nucleons. Why did this assumption fail to explain the existence of nuclei with higher magic number?

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15cse-2026-subject-07-003
CSE 2026Paper II10 Marks

A nucleus of rest mass M is initially in an excited state whose energy is \Delta E above its ground state. The nucleus emits a \gamma-ray of energy h\nu and makes a transition to its ground state. Calculate the fractional change in energy for the nucleus.

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16cse-2026-subject-07-005
CSE 2026Paper II10 Marks

What do you understand by the packing fraction 'f' and the binding energy 'E_b' of a nucleus? Draw the graphs for packing fraction f versus mass number (A) and binding energy fraction f_b \left(= \dfrac{E_b}{A}\right) versus mass number (A). Further, explain how the graphs of the variation of f and f_b with A have complementary approaches.

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17cse-2026-subject-07-001
CSE 2026Paper II10 Marks

Are the nucleons inside the nucleus governed by the laws of quantum physics? Justify your answer.

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18cse-2026-subject-07-002
CSE 2026Paper II10 Marks

Binding energy and rest mass energy of a two-nucleon bound state are denoted by B and Mc^2, respectively, where c is the speed of light. Calculate the minimum energy of a photon required to dissociate this bound state in terms of B and Mc^2.

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19cse-2026-subject-07-006
CSE 2026Paper II20 Marks

What is the criticality of a self-sustained nuclear reactor? Write the basic processes affecting the nuclear chain reactions of a finite-size nuclear reactor. Also, write the critical size of reactors of different shapes in terms of geometrical buckling constant.

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20cse-2026-subject-07-007
CSE 2026Paper II20 Marks

What do you understand by the \text{SU}(3) symmetry for the classification of baryons and mesons? Draw the octets for baryons and mesons along with their quarks and antiquarks.

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