Problem 4 The gaussian field distribution for a confocal resonator is given by Goo(y, z) = e v²+z?) Show that the beam spot size of the electric field amplitude on the mirror is 1 Wm -
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A: Note :- Since we only answer up to 3 sub-parts, we’ll answer the first 3. Please resubmit the questi...
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Q: A 6,000 pF capacitor is charged to 160 V and then quickly connected to a 20 mH inductor. (a) Determi...
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Q: 4 : Find the frequency of revolution of electron in 2nd Bohr orbit, if the radius and the speed of e...
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Q: Problem 3 If the mirrors of a Fabry-Perot resonator are placed at a distance of 30 cm apart, determi...
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Q: O. 4: Resistance of galvanometer is 500 2. Effective resistance of ammeter with shunt is 25 2. What ...
A: To find-Shunt resistance (S)=?Given-Galvanometer resistance (G)=500 ohmCombined resistance of S and ...
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Q: As a 1-dimensional problem, you are given a particle of mass, m, confined to a box of width, L. The ...
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Q: What are the disadvantages, if any, of the following techniques? • Branch Current analysis • Mesh An...
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Q: kị m1 k2 M2 k3 The mass spring system shown in Figure Q3 consists of two masses and three springs th...
A: Given m1 = 18 kgm2 = 9 kgk1 = 1350 kN/mk2 = 675 kN/m
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Q: Given that the potential V-4x yz3 + 8x²zy2 mV find E at (3,4,5). Give expression forp, c/m3.
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Q: 16. In open heart surgery, a much smaller amount of energy will defibrillate the heart. (a) What vol...
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Q: A photon of wavelength 344 nm carries a relativistic mass of (Given Planck's constant = 4.1357 x 10-...
A: Given, Wavelength, λ=344×10-9m Speed of light, c=3×108m/s Energy for photon, E=hcλ According to spec...
Q: Name three properties of ultraviolet radiations which are similar to visible light.
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Q: 8: A metal surface of area 5 m² is charged with V8.85 µC. the dielectric constant of the medium is 1...
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Q: Q. 6 : Two sources of light P and Q hav. wavelengths 6000 Å and 5500 A respectively In a Biprism exp...
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Q: 2. The Compton electron may acquire any energy from zero up to the energy of the incident photon (Is...
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Q: Calculate the rms currents (in A) for an AC source given by v(t) = Vo sin(@t), where Vo = 100 V and ...
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