A particle executing SHM has a maximum speed of \(30\) cm/s and a maximum acceleration of \(60\) cm/s2.  The period of oscillation is:
1. \(\pi \) s
2. \(\frac{\pi }{2}\) s
3. \(2\pi\) s
4. \(\frac{\pi }{4}\) s

Subtopic:  Simple Harmonic Motion |
 86%
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When a mass \(m\) is connected individually to two springs \(S_1\) and \(S_2,\) the oscillation frequencies are \(\nu_1\) and \(\nu_2.\) If the same mass is attached to the two springs as shown in the figure, the oscillation frequency would be: 

         
1. \(v_2+v_2\)

2. \(\sqrt{v_1^2+v_2^2}\)

3. \(\frac{1}{v_1}+\frac{1}{v_1}^{-1}\)

4. \(\sqrt{v_1^2-v_2^2}\)

Subtopic:  Combination of Springs |
 72%
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The following statements are given for a simple harmonic oscillator.
 

a. Force acting is directly proportional to the displacement from the mean position and opposite to it.
b. Motion is periodic.
c. Acceleration of the oscillator is constant.
d. The velocity is periodic.



Choose the correct alternatives:

1. (a, b, d)

2. (a, c)

3. (b, d)

4. (c, d)

Subtopic:  Simple Harmonic Motion |
 84%
From NCERT
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The (displacement-time) graph of a particle executing SHM is shown in the figure. Then,
     

a. the force is zero at \(t=\frac{3T}{4}\)
b. the acceleration is maximum at \(t=\frac{4T}{4}\) 
c. the velocity is maximum at \(t=\frac{T}{4}\)
d. the potential energy is equal to the kinetic energy of oscillation at \(t=\frac{T}{2}\)

Which of the statement/s given above is/are true?

1. (a), (b), (d)
2. (a), (b), (c)
3. (b), (c), (d)
4. (c), (d)
Subtopic:  Simple Harmonic Motion |
 67%
From NCERT
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A body is performing SHM, then its:

(a) average total energy per cycle is equal to its maximum kinetic energy.

(b) average kinetic energy per cycle is equal to half of its maximum kinetic energy.

(c) mean velocity for a complete cycle is equal to 2π times of its maximum velocity.

(d) root mean square velocity is 12 times of its maximum velocity.

Choose the correct alternatives:

1. (a, b, d)

2. (a, c)

3. (b, d)

4. (b, c, d)

Subtopic:  Energy of SHM |
 52%
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A particle is in linear simple harmonic motion between two points A and B, 10 cm apart (figure.) Take the direction from A to B as the positive direction.

               

                     AO=OB=5 cm

                      BC= 8 cm

a. The sign of velocity, acceleration and force on the particle, when it is 3 cm away from A going towards B, are positive.
b. The sign of velocity of the particle at C going towards B is negative.
c. The sign of velocity, acceleration and force on the particle, when it is 4 cm away from B going towards A, are negative.
d. The sign of acceleration and force on the particle when it is at point B is negative.

The correct statement/s is/are:

1. (a, b, d)

2. (a, c, d)

3. (b, c, d)

4. (c, d)

Subtopic:  Simple Harmonic Motion |
 57%
From NCERT
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The rotation of the earth about its axis is:

(a) periodic motion

(b) simple harmonic motion

(c) periodic but not simple harmonic motion

(d) non-periodic motion

Choose the correct alternatives:

1. (a, b, d)

2. (a, c)

3. (b, d)

4. (c, d)

Subtopic:  Types of Motion |
 87%
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The motion of a ball bearing inside a smooth curved bowl, when released from a point slightly above the lower point is
(a) simple harmonic motion
(b) non-periodic motion
(c) periodic motion
(d) periodic but not SHM
Choose the correct alternatives:
1. (a), (c)
2. (a), (d)
3. (c), (d)
4. (b), (c)

Subtopic:  Simple Harmonic Motion |
From NCERT
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The equation of motion of a particle is x =a cos(α t)2. The motion is:

1. periodic but not oscillatory

2. periodic and oscillatory

3. oscillatory but not periodic

4. neither periodic nor oscillatory

Subtopic:  Simple Harmonic Motion |
From NCERT
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The figure shows the circular motion of a particle. The radius of the circle, the period, the sense of revolution, and the initial position are indicated in the figure. The simple harmonic motion of the x-projection of the radius vector of the rotating particle P will be:

                                     

1. x(t)=B sin2πt30

2. x(t)=B cosπt15

3. x(t)=B sinπt15+π2

4. x(t)=B cosπt15+π2

Subtopic:  Simple Harmonic Motion | Phasor Diagram |
 52%
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