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A small block of mass m is kept on a bigger block of mass M which is attached to a vertical spring of spring constant k as shown in the figure. The system oscillates vertically. (a) Find the resultant force on the smaller block when it is displaced through a distance x above its equilibrium position. (b) Find the normal force on the smaller block at this position. When is this force smallest in magnitude? (c) What can be the maximum amplitude with which the two blocks may oscillate together?

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

A particle of mass m is attatched to three springs A, B and C of equal force constants kas shown in figure . If the particle is pushed slightly against the spring C and released, find the time period of oscillation.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

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The string the spring and the pulley shown in figure are light. Find the time period of the mass m.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

The left block in figure moves at a speed v towards the right block placed in equilibrium. All collisions to take place are elastic and the surfaces are frictionless. Show that the motions of the two blocks are periodic. Find the time period of these periodic motions. Neglect the widths of the blocks.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

Find the time period of the motion of the particle shown in figure . Neglect the small effect of the bend near the bottom.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

A uniform plate of mass M stays horizontally and symmetrically on two wheels rotating in opposite direction in Figure . The separation between the wheels is L. The friction coefficient between each wheel and the plate is μ. Find the time period of oscillation of the plate if it is slightly displaced along its length and released.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

You are walking along a seashore and a mild wind is blowing. Is the motion of air a wave motion?

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

A mechanical wave propagates in a medium along the X-axis. The particles of the medium
(a) must move on the X-axis
(b) must move on the Y-axis
(c) may move on the X-axis
(d) may move on the Y-axis.

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

The ear-ring of a lady shown in figure has a 3 cm long light suspension wire. (a) Find the time period of small oscillations if the lady is standing on the ground. (b) The lady now sits in a merry-go-round moving at 4 m/s1 in a circle of radius 2 m. Find the time period of small oscillations of the ear-ring.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

A transverse wave travels along the Z-axis. The particles of the medium must move

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

Longitudinal waves cannot

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

A wave going in a solid
(a) must be longitudinal
(b) may be longitudinal
(c) must be transverse
(d) may be transverse.

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

A wave moving in a gas

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

Find the time period of small oscillations of the following systems. (a) A metre stick suspended through the 20 cm mark. (b) A ring of mass m and radius r suspended through a point on its periphery. (c) A uniform square plate of edge a suspended through a corner. (d) A uniform disc of mass m and radius r suspended through a point r/2 away from the centre.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

A uniform disc of radius r is to be suspended through a small hole made in the disc. Find the minimum possible time period of the disc for small oscillations. What should be the distance of the hole from the centre for it to have minimum time period?

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

Mark out the correct options.

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

Consider the situation of the previous problem. Let the water push the left wall by a force F1 and the right wall by a force F2

[9] Mechanical Properties of Fluids
Chapter: [9] Mechanical Properties of Fluids
Concept: undefined >> undefined

A particle on a stretched string supporting a travelling wave, takes 5⋅0 ms to move from its mean position to the extreme position. The distance between two consecutive particles, which are at their mean positions, is 2⋅0 cm. Find the frequency, the wavelength and the wave speed.

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

Figure shows a plot of the transverse displacements of the particles of a string at t = 0 through which a travelling wave is passing in the positive x-direction. The wave speed is 20 cm s−1. Find (a) the amplitude, (b) the wavelength, (c) the wave number and (d) the frequency of the wave.

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined

A steel wire of length 64 cm weighs 5 g. If it is stretched by a force of 8 N, what would be the speed of a transverse wave passing on it?

[14] Waves
Chapter: [14] Waves
Concept: undefined >> undefined
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CBSE Science (English Medium) इयत्ता ११ Question Bank Solutions
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