<<45678
36.

A parallel plate capacitor has a dielectric slab of dielectric constant K between its plates that covers 1/3 of the area of its plates, as shown in the figure.The total capacitance of the capacitor is C while that of the portion with dielectric in between is C1. When the capacitor is charged, the plate area covered by the dielectric gets charge Q1 and the rest of the area gets charge Q2. The electric field in the dielectric is E1 and that in the other portion is E2. Choose the correct option/options. Ignoring edge effects.

2232021254_m1.PNG


A) $\frac{E_{1}}{E_{2}}=1$

B) $\frac{E_{1}}{E_{2}}=\frac{1}{K}$

C) $\frac{Q_{1}}{Q_{2}}=\frac{3}{K}$

D) $\frac{C_{}}{C_{1}}=\frac{2+K}{K}$



37.

One end of a taut string of length 3m along the x-axis is fixed at x=0. The speed of the waves in the string is 100ms-1. The order end of the string is vibrating in the y-direction so that stationary waves are set up in the string. The possible waveform (s)  of these stationary wave is (are)


A) $y(t)= A \sin\frac{\pi x}{6}\cos \frac{50\pi t}{3}$

B) $y(t)= A \sin\frac{\pi x}{3}\cos \frac{100\pi t}{3}$

C) $y(t)= A \sin\frac{5\pi x}{6}\cos \frac{250\pi t}{3}$

D) $y(t)= A \sin\frac{5\pi x}{6}\cos 250\pi t$



38.

A light source, which emits two wavelengths $\lambda_{1}$= 400nm and $\lambda_{2}$=600 nm  . is used in Young's double-slit experiment. If recorded fringe widths for  $\lambda_{1}$  and $\lambda_{2}$ are  $\beta_{1}$  and $\beta_{2}$ and the number of fringes for them within a distance y on one side of the central  maximum are   $m_{1}$ and $m_{2}$ respectively, then


A) $\beta_{2}$ > $\beta_{1}$

B) $m_{1}$ > $m_{2}$

C) from the central maximum, 3rd maximum of $\lambda_{2}$ overlaps with 5th minimum of $\lambda_{1}$

D) the angular separation of fringes of $\lambda_{1}$ is greater than $\lambda_{2}$



39.

At time t=0 terminal A in the circuit shown in the figure is connected to B by a key and an alternating current I(t)= I$\cos (\omega t) $ with I0 =I A and $\omega $= 500 rad s-1 starts flowing in it with the initial direction shown in the figure. At t= $\frac{7\pi}{6\omega}$, the key is switched from B to D. Now onwards only A and D are connected. A total charge Q flows from the battery to charge the capacitor fully. If C= 20μ F, R=10Ω and the battery is ideal with emf of 50 V, identify the correct statement (s)


A) Magnitude of the maximum charge in the capacitor before $t= \frac{7\pi}{6\omega}$ is $1\times 10^{-3}C$

B) The current in the left part of the circuit just before $t= \frac{7\pi}{6\omega} $ is clock wise

C) Immediately after A is connected to D, the current Is R is 10 A

D) $Q= 2\times 10^{-3} C$



<<45678