A particle executes SHM with time period T. The time period of oscillation of total energy is:
1. T
2. 2T
3. T2
4. Infinite

Subtopic:  Energy of SHM |
 56%
From NCERT
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A particle is executing linear simple harmonic motion with an amplitude a and an angular frequency ω. Its average speed for its motion from extreme to mean position will be:
1. aω4
2. aω2π
3. 2aωπ
4. aω3π

Subtopic:  Linear SHM |
 57%
From NCERT
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The time period of oscillation of a simple pendulum of length equal to half of the diameter of the earth is about 

1.  60 minute

2.  84.6 minute

3.  42.3 minute

4.  24 hour

Subtopic:  Angular SHM |
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The time period of the given spring-mass system is:

1. 2πmk 2. 2πm2k
3. 2π2m3k 4. πmk
Subtopic:  Combination of Springs |
 76%
From NCERT
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The equation of simple harmonic motion is given by X = (4 cm)sin6.28 t + 5π3then maximum velocity of the particle in simple harmonic motion is: 

1.  25.12 m/s 

2.  25.12 cm/s 

3.  12.56 m/s 

4.  12.56 cm/s

Subtopic:  Simple Harmonic Motion |
 89%
From NCERT
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A spring pendulum is placed on a rotating table. The initial angular velocity of the table is ω0 and the time period of the pendulum is T0. If the the angular velocity of the table becomes 2ω0, then the new time period of the pendulum will be:

1. 2T0 2. T02
3. the same 4. T02

Subtopic:  Angular SHM |
 72%
From NCERT
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If the vertical spring-mass system is dipped in a non-viscous liquid, then:

1. Only the mean position changes.
2. Only the time period changes.
3. Both the time period and mean position change.
4. Both the time period and mean position remain the same.
Subtopic:  Spring mass system |
From NCERT
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The displacement x of a particle varies with time t as x=Asin(2πtT+π3)The time taken by the particle to reach from x=A2 to x=A2 will be:

1. T2 2. T3
3. T12 4. T6

Subtopic:  Phasor Diagram |
 50%
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Force on a particle F varies with time t as shown in the given graph. The displacement x vs time t graph corresponding to the force-time graph will be:
          

1. 2.
3. 4.
Subtopic:  Linear SHM |
 68%
From NCERT
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The time period of a simple pendulum in a stationary trolley is T1. If the trolley is moving with a constant speed, then the time period is T2. Then: 
1. T1>T2
2. T1<T2
3. T1=T2
4. T2=

Subtopic:  Simple Harmonic Motion |
 78%
From NCERT
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