1
MHT CET 2025 21st April Evening Shift
MCQ (Single Correct Answer)
+1
-0

A unit vector in the direction of resultant vector of $\vec{A}=-2 \hat{i}+3 \hat{j}+\hat{k}$ and $\vec{B}=\hat{i}+2 \hat{j}-4 \hat{k}$ is

A
$\frac{-3 \hat{\mathrm{i}}+\hat{\mathrm{j}}+5 \hat{\mathrm{k}}}{\sqrt{35}}$
B
$\frac{\hat{i}+2 \hat{j}-4 \hat{k}}{\sqrt{35}}$
C
$\frac{-2 \hat{\mathrm{i}}+3 \hat{\mathrm{j}}+\hat{\mathrm{k}}}{\sqrt{35}}$
D
$\frac{-\hat{\mathrm{i}}+5 \hat{\mathrm{j}}-3 \hat{\mathrm{k}}}{\sqrt{35}}$
2
MHT CET 2025 21st April Evening Shift
MCQ (Single Correct Answer)
+1
-0

The moment of inertia of a ring about an axis passing through its centre and perpendicular to its plane is I. It is rotating with angular velocity $\omega$. Another identical ring is gently placed on it so that their centres coincide. If both the rings are rotating about the same axis then loss in kinetic energy is

A
$\frac{\mathrm{I} \omega^2}{16}$
B
$\frac{\mathrm{I} \omega^2}{8}$
C
$\frac{\mathrm{I} \omega^2}{4}$
D
$\frac{\mathrm{I} \omega^2}{2}$
3
MHT CET 2025 21st April Evening Shift
MCQ (Single Correct Answer)
+1
-0

The two coherent sources produce interference with intensity ratio ' $b$ '. In the interference pattern, the ratio $\frac{I_{\text {max }}+I_{\text {min }}}{I_{\text {max }}-I_{\text {min }}}$ will be

A
$\frac{1+b}{\sqrt{b}}$
B
$\frac{1+b}{2 \sqrt{b}}$
C
$\frac{2 \sqrt{b}}{1+b}$
D
$\frac{2 \sqrt{b}}{(1+b)^2}$
4
MHT CET 2025 21st April Evening Shift
MCQ (Single Correct Answer)
+1
-0

The radii of circular orbits of two satellites $A$ and $B$ of the earth are ' $4 R$ ' and ' $R$ ' respectively, where $R$ is the radius of earth. If the speed of satellite $B$ is 6 V , then the speed of satellite $A$ will be

A
3 V
B
4 V
C
12 V
D
$\frac{3}{4} \mathrm{~V}$
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