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2981cse-1987-subject-01-006
CSE 1987Paper I20 Marks

Find the expression for the rise of a liquid between two parallel plates separated by a distance t and dipped vertically in the liquid.

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2982cse-1987-subject-01-007
CSE 1987Paper I20 Marks

A steel ball 1.00\text{ mm} in diameter falls at a constant speed of 0.176\text{ cm s}^{-1} in a large vessel filled with oil. Calculate the dynamic viscosity of the oil (Density of steel = 7,700\text{ kg/m}^3 density of oil = 900\text{ kg/m}^3).

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2983cse-1987-subject-01-008
CSE 1987Paper I20 Marks

For an isotropic solid define Young's modulus of elasticity Y, coefficient of rigidity \eta and Poisson's ratio \alpha. Establish the relation. \sigma = \frac{Y - 2\eta}{2\eta}

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2984cse-1987-p1-q8-b
CSE 1987Paper I20 Marks

Write a note on Coriolis force and its manifestations.

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2985cse-1987-p1-q8-c
CSE 1987Paper I20 Marks

Write a note on Predictions of general theory of relativity and their experimental verification.

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2986cse-1987-subject-01-009
CSE 1987Paper I20 Marks

A muon (\mu meson) is for med high up in the atmosphere and travels towards the earth with a speed of 0.992\text{ c}. It decays af ter travelling a distance of 6.0\text{ km}. In what time does the muon decay as measured (i) by us and (ii) in its own frame of reference? What is the distance covered the muon in its own frame of reference?

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2987cse-1987-subject-01-010
CSE 1987Paper I20 Marks

Show that the kinetic energy T of relativistic particle moving with momentum p is T = P^2 / m + m_0 What m_0 its rest mass and m is its relativistic mass.

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2988cse-1986-subject-08-005
CSE 1986Paper II60 Marks

Give an account of the basic principles of radio transmission and reception. Detailed circuits are not necessary but schematic diagrams indicating functions of various units may be shown.

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2989cse-1986-subject-08-004
CSE 1986Paper II60 Marks

Explain, on the basis of bond structure, the behaviour of insulators and conductors. Describe the effect of adding donor or acceptor impurities on conduction in a semi-conductor. Explain the action of a p-n junction as a rectifier. \begin{aligned} \text{Mass of electron} &= 9.1 \times 10^{-31}\text{ kg} \\\\ 1\text{ a.m.u} &= 931\text{ MeV} \\\\ \text{Avogadro's numbers} &= 6.1 \times 10^{23}\text{ (gm-mole)}^{-1} \\\\ \varepsilon_0 &= 1/36\pi \times 10^{-9}\text{ f/m} \\\\ h &= 6.6 \times 10^{-27}\text{ erg sec} \\\\ c &= 3.0 \times 10^{10}\text{ cm/sec} \\\\ 1\text{ eV} &= 1.6 \times 10^{-19}\text{ erg} \\\\ &= 1.6 \times 10^{-19}\text{ joule} \end{aligned}

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2990cse-1986-subject-08-003
CSE 1986Paper II20 Marks

Draw a complete circuit for common emitter (small signal) amplifier for low frequencies and explain briefly its working.

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2991cse-1986-subject-08-001
CSE 1986Paper II60 Marks

Distinguish between dia-, para- and ferromagnetism. Give an account of Weiss theory of ferromagnetism.

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2992cse-1986-subject-08-002
CSE 1986Paper II20 Marks

A triode has a transconductance (g_m) of 1,600\text{ micromhos}. The following table gives two sets of the plate voltage (E_b), the grid voltage (E_c) and the plate current (I_b). \begin{tabular}{c c c} E_b & E_c & I_b \\ 250\text{ V} & -22\text{ V} & 12.6\text{ mA} \\ 180 & -16.5 & 12.0 \end{tabular} Define the terms amplification factor and plate resistance and calculate them for the above case.

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2993cse-1986-subject-07-002
CSE 1986Paper II20 Marks

Which of the following reactions are forbidden and why? \begin{aligned} p &\longrightarrow n + e^+ + u_e \\\\ \pi^+ &\longrightarrow \mu^+ + u_\mu \\\\ \text{H}^2 &\longrightarrow \text{He}^3 + e^- + e \end{aligned}

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2994cse-1986-subject-07-001
CSE 1986Paper II20 Marks

The number of alpha particles emitted per gm of radium each second is 3.71 \times 10^{10}. Atomic weight of radium is 226. Calculate its half-life in years.

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2995cse-1986-subject-06-001
CSE 1986Paper II20 Marks

Write a brief note (about 200\text{ words}) on X-ray absorption edges.

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2996cse-1986-subject-06-002
CSE 1986Paper II60 Marks

Give an account of Pauli's exclusion principle. Show how it leads to the building up of the Periodic Table of elements. The description must particularly emphasize shell structure and the placing of alkali metals, halogens and inert gases in the Periodic Table.

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2997cse-1986-subject-05-001
CSE 1986Paper II20 Marks

Find the Fermi energy in eV of electrons in sodium(_{11}^{23}\text{C Na}), given its density to be 0.97\text{ g cm}^{-3}. Treat the electrons as a free gas.

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2998cse-1986-subject-05-002
CSE 1986Paper II20 Marks

The stopping potential for electrons emitted from a metal, due to photoelectric effect, is found to be 1\text{ volt} for light of 2,500\text{ Angstrom units}. Calculate the work function of the metal in electron volts.

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2999cse-1986-subject-05-003
CSE 1986Paper II60 Marks

Construct solutions of Schrodinger equation for a particle moving the potential \begin{aligned} V(x) &= 0 & \text{for } x < 0 \\\\ &= V_0 & \text{for } x > 0 \end{aligned} Deduce the reflection coefficient for particles incident from left to right (i.e. from negative to positive x regions) with energy E > V_0. Do you expect any reflection for particles of same energy incident from right to left? Explain qualitatively.

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3000cse-1986-subject-04-003
CSE 1986Paper I20 Marks

Write a note on Thermal ionization and its application.

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