Intro to Simple Pendulum
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A simple pendulum attached to the ceiling of a stationary lift has a time period T. The distance y covered by the lift moving upwards varies with time t as y=t2 where y is in metre and t in second. If g=10ms−2, the time period of the pendulum will be
√45T
√56T
√54T
√65T
- None of these
- (g+qEmg)1/2
- (gg+qEm)3/2
- (gg+qEm)1/2
[Take π2 as 9.85]
The length of the second’s pendulum on the surface of earth is 1m. The length of second’s pendulum on the surface of moon, where g is 16th value of earth surface, is:
16m
136m
6m
36m
Does air resistance affect the period of a pendulum
- Increase
- Remains unchanged
- Decrease
- Become erratic
A simple pendulum makes oscillations in seconds. What is the time period and frequency of its oscillation?
How do you double the period of a pendulum?
- Decrease
- Increase
- Remain the same
- May increase or decrease
- 0.16
- 0.64
- 1.25
- 0.8
- 15.5 sec
- 20.5 sec
- 30.5 sec
- No gain/loss.
- 13
- 12
- 1√3
- √3
Why do shorter pendulums swing faster?
Length of a seconds pendulum is approximately:
9.9 cm
99.9 cm
99 cm
999 cm
- √87T
- 8272T
- T
- 87T
A particle of mass executes SHM under a force . Speed of particle at mean position is Then amplitude of oscillations is
- mgα2m
- mg
- mgαm
- mg(1+α2m)
(Neglect frictional force of water, take density of water as 1000 kg/m3)
- 10
- 20
- 30
- 40
For small oscillations, a pendulum of length L is released from rest. Its length is L and time period is T. vertically below the point of suspension O, there is an obstacle P at a vertical distance x. the pendulum returns back to its original position after time 5T8. Find x.
L/2
13L/16
15L/16
3L/4
In simple harmonic motion, motion is executed by a particle that is subject to a force which is ________ to the displacement of the particle and is directed toward the _________.
- 37 cm and 26 cm
- 25 cm and 14 cm
- 30 cm and 19 cm
- 36 cm and 25 cm
How many vibrations, a simple pendulum will complete in 52 second?
- 2 s
- 4 s
- 6 s
- 8 s
- T
- T2
- 2T
- infinity