1
MHT CET 2026 15th April Evening Shift
MCQ (Single Correct Answer)
+1
-0
In case of perfectly elastic collision,
A
the total kinetic energy before collision is equal to the total kinetic energy after collision.
B
the total kinetic energy before collision is less than total kinetic energy after collision.
C
the total kinetic energy before collision is greater than the total kinetic energy after collision.
D
coefficient of restitution is equal to zero.
2
MHT CET 2026 15th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
Two masses $m_1$ and $m_2$ moving with velocities $V_1$ and $V_2$ in opposite directions collide elastically and after collision $m_1$ and $m_2$ move with velocities $V_2$ and $V_1$ respectively. The ratio $\dfrac{m_2}{m_1}$ is
A
$0.25$
B
$0.50$
C
$0.75$
D
$1.0$
3
MHT CET 2026 13th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
A stationary body explodes into two parts of masses $M_1$ and $M_2$. They move in opposite directions with velocities $V_1$ and $V_2$. The ratio of their kinetic energies is
A
$\dfrac{M_1}{M_2}$
B
$\dfrac{M_2}{M_1}$
C
$\dfrac{M_1^2}{M_2^2}$
D
$\dfrac{M_2^2}{M_1^2}$
4
MHT CET 2026 11th April Evening Shift
MCQ (Single Correct Answer)
+1
-0
A mass M moving with velocity V along X-axis collides and sticks to another mass 2M which is moving along Y-axis with velocity 3V. The velocity of the combination, after the collision is
A
$V\hat{i} + 2V\hat{j}$
B
$\dfrac{V}{3}\hat{i} + 2V\hat{j}$
C
$V\hat{i} + 3V\hat{j}$
D
$2V\hat{i} + 4V\hat{j}$

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