1
MHT CET 2026 16th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
A particle is moving with constant angular acceleration $4\,\text{rad/s}^2$ in circular path. At what time the magnitudes of its tangential acceleration and centripetal acceleration will be equal ?
A
$0.2$ s
B
$0.4$ s
C
$0.5$ s
D
$0.6$ s
2
MHT CET 2026 16th April Morning Shift
MCQ (Single Correct Answer)
+1
-0
A particle describes a horizontal circle of radius 'r' in conical funnel with smooth inner surface with a speed of $0.5$ m/s. The height of the plane of the circle from the vertex of the funnel is (acceleration due to gravity, $g = 10\,\text{m/s}^2$)
A
$1.5$ cm
B
$2.5$ cm
C
$3.5$ cm
D
$0.5$ cm
3
MHT CET 2026 15th April Evening Shift
MCQ (Single Correct Answer)
+1
-0
A particle at rest starts moving with constant angular acceleration '$\alpha$' in a circular path of radius 'r'. At certain instant, the magnitude of centripetal acceleration is $\left(\dfrac{1}{3}\right)^{rd}$ the tangential acceleration. The relation between linear speed (V) and angular acceleration ($\alpha$) is
A
$V = \dfrac{r\alpha}{3}$
B
$V = \alpha\sqrt{\dfrac{r}{2}}$
C
$V = r\sqrt{\dfrac{\alpha}{3}}$
D
$V = \sqrt{\dfrac{\alpha r}{3}}$
4
MHT CET 2026 15th April Evening Shift
MCQ (Single Correct Answer)
+1
-0
A car of mass m is crossing the convex bridge of radius of curvature R with speed V. At the highest point the thrust is ($g$ = gravitational acceleration)
A
$mg$
B
$\dfrac{mv^2}{R}$
C
$mg - \dfrac{mv^2}{R}$
D
$mg + \dfrac{mv^2}{R}$

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