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महाराष्ट्र राज्य शिक्षण मंडळएचएससी विज्ञान (सामान्य) इयत्ता १२ वी

Two S.H.M.’s have zero phase difference and equal amplitudes A. The resultant amplitude on their composition will be ______

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प्रश्न

Two S.H.M.’s have zero phase difference and equal amplitudes A. The resultant amplitude on their composition will be ______ 

पर्याय

  • 2 A

  • zero

  • `sqrt2`A

  • `sqrt"2A"`

MCQ
रिकाम्या जागा भरा
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उत्तर

Two S.H.M.’s have zero phase difference and equal amplitudes A. The resultant amplitude on their composition will be 2 A.

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पाठ 5: Oscillations - MCQ’s

संबंधित प्रश्‍न

Potential energy of a particle performing linear S.H.M. is 0.1 π2x2 joule. If the mass of the particle is 20 g, find the frequency of S.H.M.


A simple pendulum moves from one end to the other in ¼ second. What is its frequency?


A particle performs linear S.H.M. of period 4 seconds and amplitude 4 cm. Find the time taken by it to travel a distance of 1 cm from the positive extreme position.


Obtain an expression for the resultant amplitude of, the composition of two S.H.M.’s having the same period along the same path.  


In amplitude modulation,


The total energy of the body executing S.H.M. is E. The kinetic energy of the body, when the displacement is half of the amplitude is ______.


A particle is executing S.H.M. with amplitude of 4 cm and time period 12 s. The time taken by the particle in going from its mean position to a position of displacement equal to 2 cm is T1 The time taken from this displaced position of 2 cm to reach the extreme position is T2. T1/ T2 will be____________.


If 'x', 'v' and 'a' denote the displacement, velocity and acceleration of a particle respectively executing SHM of periodic time t, then which one of the following does not change with time?


The equation of S.H.M. of a particle of amplitude 4 cm performing 150 oscillations per minute starting with an initial phase 30° is ____________.


A body of mass 1 kg is suspended from a spring of negligible mass. Another body of mass 500 g moving vertically upwards hits the suspended body with a velocity 3 ms-1 and gets embedded in it. If the frequency of oscillation of the system of the two bodies after collision `10/pi` Hz, the amplitude of motion and the spring constant are respectively ____________.


A horizontal spring executes S.H.M. with amplitude 'A1', when mass 'm1' is attached to it, When it passes through mean position another mass 'm2' is placed on it. Both masses move together with amplitude 'A2'. Therefore A2 : A1 is ______ 


A mass M attached to a horizontal spring executes S.H.M. of amplitude A1. When the mass M passes through its mean position, then a smaller mass m is placed over it and both of them move together with amplitude A2. The ratio of `(A_1/A_2)` is ______ 


Two trains are moving towards each other with speeds of 20m/s and 15 m/s relative to the ground. The first train sounds a whistle of frequency 600 Hz. The frequency of the whistle heard by a passenger in the second train before the train meets, is ______. (the speed of sound in air is 340 m/s) 


A particle performing SHM starts equilibrium position and its time period is 16 seconds. After 2 seconds its velocity is π m/s. Amplitude of oscillation is ______. `(cos 45° = 1/sqrt2)`


A mass m1 connected to a horizontal spring performs SHM with amplitude A. While mass m1 is passing through mean position, another mass m2 is placed on it so that both the masses move together with amplitude A1. The ratio of `"A"_1/"A"` is ______. (m2 < m1)


A block of mass m, connected to two springs of spring constants k1 and k2 as shown, oscillates on a smooth horizontal surface. What is the effective spring constant of the oscillation?


A particle performs linear SHM with amplitude A and frequency n. Its speed midway between an extreme position and equilibrium position is ______.


Light of a certain colour has 2500 waves to the millimetre in air. What is its frequency?


If the period of a oscillation of mass 'm' suspended from a spring is 2 s, then the period of suspended mass '4m' with the same spring will be ______.


When a particle of mass m is attached to a vertical spring of spring constant k and released, its motion is described by y(t) = y0 sin2 ωt, where ‘y’ is measured from the lower end of the unstretched spring. Then ω is:


A vertical spring oscillates with period 2 s with mass ‘m’ is suspended from it. When the mass ‘m’ is at rest, the spring is stretched through a distance of ______.

(Take g = π2 = 10)


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