In a single slit diffraction experiment, the diffraction pattern is observed on a screen placed at a distance of 2 m from the slit of 1 mm width. If the distance between the first dark fringe on either side of the central to right fringe is 2.2 mm . what is the wave length of the monochromatic light from a distance source, used in this experiment?
$3900^{\circ} \mathrm{A}$
$11000^{\circ} \mathrm{A}$
$1100^{\circ} \mathrm{A}$
$5500^{\circ} \mathrm{A}$
A wire, made of a certain material of length-l and area of cross section-a can withstand a maximum load $=\mathrm{W}$ without breaking. If, another wire of the same material and crosssectional area is used with double the original length, what will be the maximum load that the wire can withstand, without breaking?
Will be halved to 0.5 W
Will be doubled to 2 W
Remains the same $=\mathrm{W}$
Would be four times $=4 \mathrm{~W}$
A bullet, fired into a door gets embedded exactly at it's centre, causing the door to rotate about it's vertical axis, practically without friction, with an angular velocity of $0.625 \mathrm{rads}^{-1}$. The door is 1.0 m wide and weighs 12 kg . If the mass of the bullet is 10 g , find the speed with which it was fired. (Hint: The moment of inertia of the door about the vertical axis at one end is $\frac{M L^2}{3}$.
$645 \mathrm{~ms}^{-1}$
$342 \mathrm{~ms}^{-1}$
$124 \mathrm{~ms}^{-1}$
$500 \mathrm{~ms}^{-1}$
In the equation $X=G^{-1 / 2} h^{1 / 2} c^{5 / 2}$, where G- universal gravitation constant, $h$ - Planck's constant and c - velocity of light, the dimensions of X are that of
Stress
Energy
Upthrust
Momentum
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