1. | simple harmonic motion of frequency ωπ. |
2. | simple harmonic motion of frequency 3ω2π. |
3. | non-simple harmonic motion. |
4. | simple harmonic motion of frequency ω2π. |
The period of oscillation of a mass M suspended from a spring of negligible mass is T. If along with it another mass M is also suspended, the period of oscillation will now be:
1. T
2. T/√2
3. 2T
4. √2T
Two simple harmonic motions of angular frequency 100 rad s−1 and 1000 rad s−1 have the same displacement amplitude. The ratio of their maximum acceleration will be:
1. 1:10
2. 1:102
3. 1:103
4. 1:104
A point performs simple harmonic oscillation of period T and the equation of motion is given by x= a sin (ωt +π/6).After the elapse of what fraction of the time period the velocity of the point will be equal to half to its maximum velocity?
1. T8
2. T6
3. T3
4 T 12
The angular velocities of three bodies in simple harmonic motion are ω1,ω2,ω3 with their respective amplitudes as A1,A2,A3. If all the three bodies have same mass and maximum velocity, then
1. A1ω1=A2ω2=A3ω3
2. A1ω12=A2ω22=A3A32
3. A12ω1=A22ω2=A32ω3
4. A12ω12=A22ω22=A2
The amplitude of a particle executing SHM is 4 cm. At the mean position the speed of the particle is 16 cm/sec. The distance of the particle from the mean position at which the speed of the particle becomes 8√3cm/sec will be
1. 2√3cm
2. √3cm
3. 1 cm
4. 2 cm