A particle executes SHM with an amplitude AA and the time period TT. If at t=0,t=0, the particle is at its origin (mean position), then the time instant when it covers a distance equal to 2.5A2.5A will be:
1. T12T12 2. 5T125T12
3. 7T127T12 4. 2T32T3

Subtopic:  Linear SHM |
 57%
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The time period of a spring mass system at the surface of the earth is 2 s.2 s. What will be the time period of this system on the moon where the acceleration due to gravity is 116th116th of the value of gg on the earth's surface?

1. 16 s16 s 2. 26 s26 s
3. 2 s2 s 4. 12 s12 s
Subtopic:  Spring mass system |
 52%
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A particle undergoes SHM with a time period of 2 seconds. In how much time will it travel from its mean position to a displacement equal to half of its amplitude?

1. 12s12s

2. 16s16s

3. 14s14s

4. 13s13s

Subtopic:  Simple Harmonic Motion |
 76%
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The uniform stick of mass m length LL is pivoted at the centre. In the equilibrium position shown in the figure, the identical light springs have their natural length. If the stick is turned through a small angle θθ, it executes SHM. The frequency of the motion is:

 

1. 12π6Km12π6Km

2. 12π3K2m12π3K2m

3. 12π3Km12π3Km

4. None of these

Subtopic:  Angular SHM |
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If the displacement xx and the velocity vv of a particle executing simple harmonic motion are related through the expression 4v2=25x2,4v2=25x2, then its time period will be:
1. ππ 2. 2π2π
3. 4π4π 4. 6π6π
Subtopic:  Linear SHM |
 67%
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A simple pendulum is oscillating without damping. When the displacement of the bob is less than maximum, its acceleration vector aa is correctly shown in: 

1. 2.
3. 4.
Subtopic:  Angular SHM |
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Which of the following figure represents damped harmonic motion?

(i)
(ii)
(iii)
(iv)

1. (i) and (ii)

2. (iii) and (iv)

3. (i), (ii), (iii), and (iv)

4. (i) and  (iv)

 77%
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 The displacement of a particle executing SHM is given by y = 0.25 (sin 200t) cm. The maximum speed of the particles is:

1.  200 cm/sec

2.  100 cm/sec

3.  50 cm/sec

4.  0.25 cm/sec

Subtopic:  Simple Harmonic Motion |
 85%
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The equations of the displacement of two particles making SHM are represented by y1=asin(ωt+ϕ)y1=asin(ωt+ϕ) and y2=acos(ωt)y2=acos(ωt) respectively. The phase difference of the velocities of the two particles will be:
1. π2+ϕπ2+ϕ
2. ϕϕ
3. ϕϕ
4. ϕπ2ϕπ2
Subtopic:  Linear SHM |
 54%
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If a particle is executing SHM, with an amplitude A,A, the distance moved and the displacement of the body in a time equal to its time period are, respectively:
1. 2A,A 2. 4A,0
3. A,A 4. 0,2A
Subtopic:  Linear SHM |
 83%
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