The amplitude of a simple harmonic oscillator is A and speed at the mean position is v0. The speed of the oscillator at the position x = A3 is:

1.  2v03

2.  2v03

3.  23v0

4.  2v03

Subtopic:  Simple Harmonic Motion | Damped Oscillations (OLD NCERT) |
 76%
From NCERT
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The initial phase of the particle executing SHM with y = 4 sin ωt + 3 cos ωt is 

1.  53°

2.  37° 

3.  90°

4.  45°

Subtopic:  Simple Harmonic Motion |
 52%
From NCERT
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A spring-block system is brought from the earth's surface to deep inside the mine. Its period of oscillation will:

1. increase 
2. decrease
3. remain the same 
4. may increase or decrease depending on the mass of the block.

Subtopic:  Angular SHM |
 62%
From NCERT
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A particle executes S.H.M with amplitude A. If the time taken by the particle to travel from -A to A/2 is 4 seconds, its time period is 

1.  4s

2.  8s 

3.  12 s

4.  18 s

Subtopic:  Phasor Diagram |
 78%
From NCERT
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Two simple harmonic motions are represented by y1 = 6 sin2πt + π3 and y2 = 3sin 2πt + cos 2πtThe ratio of their amplitudes is

1.  2

2.  23

3.  12

4.  22

Subtopic:  Simple Harmonic Motion |
 67%
From NCERT
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A disc executes S.H.M. about the axis XX' in the plane of the disc as shown in the figure. Its time period of oscillation is:

                                  

1.  π6Rg

2.  2πRg

3.  2π2Rg

4.  π3R2g

Subtopic:  Angular SHM |
 57%
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A spring-block system shown in the figure oscillates with a certain time period. If charge \(q\) is given to the block and a uniform field \(E\) is switched on, then its time period of oscillation is:

             

1. increases
2. decreases 
3. may increase or decrease
4. remains the same

Subtopic:  Combination of Springs |
 57%
From NCERT
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The period of oscillation of the spring block system shown in the figure is: (assume pulleys and spring to be ideal)

                    

1.  2πm3k

2.  2π4m3k

3.  2π3m4k

4.  2πmk

Subtopic:  Combination of Springs |
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The graph between velocity and acceleration of a particle executing S.H.M. can be

1.  A circle

2.  An ellipse

3.  A straight line

4.  Both (1) & (2)

Subtopic:  Simple Harmonic Motion |
 51%
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The potential energy of a particle of mass m executing SHM is given by U = A(1 - cos2x), where x is the instantaneous displacement of the particle. The time period of oscillation is

1.  πmA

2.  2πmA

3.  πm2A

4.  2πm2A

Subtopic:  Energy of SHM |
From NCERT
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