Home
Class 11
PHYSICS
A body of mass 36 g moves with S.H.M of ...

A body of mass 36 g moves with S.H.M of amplitude A=13cm and time period T=12sec.At time T=0 the displacement x is +13 cm.Calculate the shortest time of passage from x=+6.5 cm to x-6.5cm?

A

4sec

B

2 sec

C

6 sec

D

3 sec

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Similar Questions

Explore conceptually related problems

A body of mass 36 g moves with S.H.M. of amplitude A = 13 cm and time period T = 12 s. At time t = 0, the displacement x is + 13 cm. The shortest time of passage from x = + 6.5 cm to x = - 6.5 cm is

A body of mass 8 kg performs S.H.M. of amplitude 60 cm. The restoring force is 120 N, when the displacement is 60 cm. The time period is

For the force displacement graph shown below. Calculate the work done by the force displacing the body from x=1 cm to x=5 cm.

A particle performs SHM on x- axis with amplitude A and time period period T .The time taken by the particle to travel a distance A//5 string from rest is

A particle performs SHM on x- axis with amplitude A and time period period T .The time taken by the particle to travel a distance A//5 starting from rest is

A tiny mass performs S.H.M along a straight line with a time period of T=0.60sec and amplitude A=10.0cm. Calculate the mean velocity (in m/sec) in the time to displace by A/2 .

A particle executing simple harmonic motion with an amplitude 5 cm and a time period 0.2 s. the velocity and acceleration of the particle when the displacement is 5 cm is

A particle exectes S.H.M. along a straight line with mean position x = 0 , period 20 s amplitude 5 cm . The shortest time taken by the particle to go form x = 4 cm to x = -3 cm is

A body describes simple harmonic motion with an amplitude of 5 cm and a period of 0.2s . Find the acceleration and velocity of the body when the displacement is (a) 5cm, (b) 3cm, (c) 0 cm.

An object performs SHM of amplitude 5 cm and time period 4 s. If timing is started when the object is at the centre of the oscillation i.e., x=0 then calculate. (i) Frequency of oscillation. (ii) The displacement at 0.5 S.