1
AIPMT 2012 Mains
MCQ (Single Correct Answer)
+4
-1
Change Language
A car of mass m is moving on a level circular track of radius R. If $$\mu $$s represents the static friction between the road and tyres of the car, the maximum speed of the car in circular motion is given by
A
$$\sqrt {{\mu _s}mRg} $$
B
$$\sqrt {{{Rg} \over {{\mu _s}}}} $$
C
$$\sqrt {{{mRg} \over {{\mu _s}}}} $$
D
$$\sqrt {{\mu _s}Rg} $$
2
AIPMT 2012 Mains
MCQ (Single Correct Answer)
+4
-1
Change Language
A circular platform is mounted on a frictionless vertical axle. Its radius R = 2 m and its moment of inertia about the axle is 200 kg m2. It is initially at rest. A 50 kg man stands on the edge of the platform and begins to walk along the edge at the speed of 1 ms$$-$$1 relative to the ground. Time taken by the man to complete one revolution is
A
$$\pi $$ s
B
$${{3\pi } \over 2}$$ s
C
2$$\pi $$ s
D
$${\pi \over 2}$$ s
3
AIPMT 2012 Mains
MCQ (Single Correct Answer)
+4
-1
Change Language
A car of mass m starts from rest and accelerates so that the instantaneous power delivered to the car has a constant magnitude P0. The instantaneous velocity of this car is proportional to
A
t2P0
B
t1/2
C
t$$-$$1/2
D
$${t \over {\sqrt m }}$$
4
AIPMT 2012 Mains
MCQ (Single Correct Answer)
+4
-1
Change Language
A stone is dropped from a height h. It hits the ground with a certain momentum P. If the same stone is dropped from a height 100% more than the previous height, the momentum when it hits the ground will change by
A
68%
B
41%
C
200%
D
100%
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