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2941cse-1988-subject-01-006
CSE 1988Paper I20 Marks

A vessel of mass 10^7\text{ kg} is gyrostabilised by a uniform circular disc of mass 5\times 10^4\text{ kg} and radius 2\text{m} which rotates at 15\text{ rev/sec}. What is the angular momentum of the stabilizer ?

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2942cse-1988-subject-01-008
CSE 1988Paper I20 Marks

What is the momentum of a proton having kinetic energy 1\text{ BeV} ? The energy equivalent to proton rest mass is 0.938\text{ BeV}.

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2943cse-1987-subject-08-002
CSE 1987Paper II20 Marks

Write a shout note (about 200 words) on super-conductors and the nature of revolution that may come up if superconductors with critical temperature well above the room temperatures are developed.

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2944cse-1987-subject-08-001
CSE 1987Paper II60 Marks

Define Fermi energy. Show that the Fermi level lays half-way between the top of the valence band and the bottom of the conduction band of an intrinsic semiconductor. Explain why an extrinsic semiconductor, such as an N-type crystal, has more free electrons than holes but is found to be electrically uncharged.

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2945cse-1987-subject-08-003
CSE 1987Paper II60 Marks

Draw the circuit diagrams suitable for measuring the voltage amplification of a triode valve with the following methods of connection: (a) Common cathode (b) Common grid (c) Common anode. Write down, without proofs, the expression for amplification in each case in terms of \mu and the relevant resistance values. Which of the three methods is usually employed in high frequency circuit practices and why ?

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2946cse-1987-subject-07-002
CSE 1987Paper II20 Marks

Some amount of a radioactive substance (half-life=30\text{ days}) spread inside a room and consequently the level of radiation becomes 50 times the permissible level for normal occupancy of the room. After how many days the room would be safe for occupation?

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2947cse-1987-subject-07-004
CSE 1987Paper II20 Marks

Write a brief note (about 200 words) on parity violation

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2948cse-1987-subject-07-001
CSE 1987Paper II20 Marks

Interpret the nuclear process described by the equation _{92}U^{235} + _{0}n^{1} \rightarrow _{92}n^{236} \rightarrow _{56}Ba^{141} + _{36}Kr^{92} + 3 _{0}n^{1} + Q The products of this kind of reaction vary widely, but the average Q is found to be 180 MeV. Compute the consumption rate of U^{235} per year if power generation is to be an average 100 MW. (Take efficiency = 1).

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2949cse-1987-subject-07-003
CSE 1987Paper II20 Marks

Schematically draw the binding energy cone for atomic nuclei defining the parameters used. Explain how it indicates release of energy on fission of some nuclei and on fusion of other. Could one of these processes be the origin of solar energy?

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2950cse-1987-subject-06-001
CSE 1987Paper II20 Marks

The series limit due Balmer series for hydrogen is given by 3.65 \times 10^{-5}\text{ cm.} and an element is found to give k-series wavelength down to 10 \times 10^{-10}\text{ cm,} Find the atomic number of the element.

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2951cse-1987-subject-06-002
CSE 1987Paper II20 Marks

In observing the Raman spectrum of a sample, using 2537\text{ \AA} as the exciting line, one gets a Stokes line at 2683\text{ \AA}. Deduce the Raman shift in \text{cm}^{-1} units. What information does it give? Compute the wavelength, in \text{\AA} units, for the corresponding Stokes and anti-Stokes tines if the exciting line is 5461\text{ \AA}.

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2952cse-1987-subject-05-001
CSE 1987Paper II20 Marks

Compare the energy of a photon with that of a neutron when both are associated with wavelength of 1\text{\AA}.

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2953cse-1987-subject-05-003
CSE 1987Paper II20 Marks

Define Compton wavelength for an electron. Calculate in electron-volts the photon energy corresponding to radiations of the Compton wavelength. What light does the Compton effect throw on the nature of X-rays?

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2954cse-1987-subject-05-002
CSE 1987Paper II60 Marks

State and explain Heisenberg uncertainty principle using situations where one of the parameters is (a) liner distance x (b) angle \phi (c) energy E. Prove that according to the principal the presence of an electron within the atomic nucleus is not possible.

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2955cse-1987-subject-04-002
CSE 1987Paper I20 Marks

Find the density of hydrogen gas at temperature of 25^\circ\text{C} and pressure of 750\text{ mm Hg}.

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2956cse-1987-subject-04-007
CSE 1987Paper I60 Marks

Explain thermoionic emission. Discuss Richardson's derivation of the thermionic equation and show how the velocity distribution of the emitted electrons corroborates Fermi-Dirac distribution, Mention a few modern thermoionic emitters.

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2957cse-1987-subject-04-003
CSE 1987Paper I20 Marks

Derive the expression for the energy distribution of particles according to Bose-Einstein statistics.

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2958cse-1987-subject-04-004
CSE 1987Paper I20 Marks

Mention some experiment which establishes that electrons in metals obey Fermi-Dirac statistics and justify your answer in some detail.

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2959cse-1987-p1-q8-e
CSE 1987Paper I20 Marks

Write a note on Production of temperature below 1 K.

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2960cse-1987-subject-04-005
CSE 1987Paper I20 Marks

For a Maxwell-Boltzmann gas derive the expression for (i) the most probable speed (ii) the average speed and (iii) the root mean square speed and find their ratio (taking the most probable speed as unity).

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