Physics
A linear harmonic oscillator of force constant 2×10^6 N/m and amplitude 0.01 m has a total mechanical energy of 160 J. Its
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Aug
A linear harmonic oscillator of force constant 2×10^6 N/m and amplitude 0.01 m has a total mechanical energy of 160 J. Its A linear harmonic oscillator of force constant 2×10^6 N/m and amplitude 0.01 m has a total mechanical energy of 160 J. Its August 25, 2020 Category: Chapter 15 - SHM , NEET Last [...]
In an SHM, restoring force is F=−kx, where k is force constant, x is displacement and A is the amplitude of motion, then the total energy depends upon
25
Aug
In an SHM, restoring force is F=−kx, where k is force constant, x is displacement and A is the amplitude of motion, then the total energy depends upon In an SHM restoring force is F=−kx then the total energy depends upon where k is force constant x is displacement and A is the amplitude of [...]
The displacement of particle between maximum potential energy position and maximum kinetic energy position in simple harmonic motion is
25
Aug
The displacement of particle between maximum potential energy position and maximum kinetic energy position in simple harmonic motion is The displacement of particle between maximum potential energy position and maximum kinetic energy position in simple harmonic motion is August 25, 2020 Category: Chapter 15 - SHM , NEET Last 32 Years Solved 1988 - 2019 [...]
A particle of mass m oscillates with simple harmonic motion between points x1 and x2, the equilibrium position being O. Its potential energy is plotted. It will be as given below in the graph:
25
Aug
A particle of mass m oscillates with simple harmonic motion between points x1 and x2, the equilibrium position being O. Its potential energy is plotted. It will be as given below in the graph: A particle of mass m oscillates with simple harmonic motion between points x1 and x2 the equilibrium position being O. Its [...]
The potential energy of a simple harmonic oscillator when the particle is half way to its end point is
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Aug
The potential energy of a simple harmonic oscillator when the particle is half way to its end point is The potential energy of a simple harmonic oscillator when the particle is half way to its end point is August 25, 2020 Category: Chapter 15 - SHM , NEET Last 32 Years Solved 1988 - 2019 [...]
A satellite of mass m is orbiting around the earth in a circular orbit with a velocity v. What will be its total energy ?
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Aug
A satellite of mass m is orbiting around the earth in a circular orbit with a velocity v. What will be its total energy ? A satellite of mass m is orbiting around the earth in a circular orbit with a velocity v. What will be its total energy ? August 25, 2020 Category: Chapter [...]
A ball is dropped from a satellite revolving around the earth at height of 120 km. The ball will
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Aug
A ball is dropped from a satellite revolving around the earth at height of 120 km. The ball will A ball is dropped from a satellite revolving around the earth at height of 120 km. The ball will August 25, 2020 Category: Chapter 12 - Gravitation , NEET Last 32 Years Solved 1988 - 2019 [...]
A planet is moving in an elliptical orbit. If T,V,E and L stand for its kinetic energy, potential energy, total energy and the magnitude of the angular momentum of the planet then the true statement out of the following is:
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Aug
A planet is moving in an elliptical orbit. If T,V,E and L stand for its kinetic energy, potential energy, total energy and the magnitude of the angular momentum of the planet then the true statement out of the following is: A planet is moving in an elliptical orbit. If T E and L stand for [...]
A body attains a height equal to the radius of the earth when projected from earth’ surface. The velocity of the body with which it was projected is.
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Aug
A body attains a height equal to the radius of the earth when projected from earth’ surface. The velocity of the body with which it was projected is. A body attains a height equal to the radius of the earth when projected from earth' surface. The velocity of the body with which it was projected [...]
A body of mass m is placed on earth’s surface which is taken from earth surface to a height of h=3 R, then change in gravitational potential energy is:
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Aug
A body of mass m is placed on earth’s surface which is taken from earth surface to a height of h=3 R, then change in gravitational potential energy is: A body of mass m is placed on earth's surface which is taken from earth surface to a height of h=3 R then change in gravitational [...]