Numerical Terminus
Numerical Terminus
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A particle of mass m is attached to three springs A,B,and C of equal force constants k as shown in
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The block of mass m1 shown in figure 12E2 is fastened to the spring and the block of mass m2 is
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In figure 12E3 k=100N/m M =1kg and F=10N find the compression of the spring in the equilibrium posit
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The spring shown in figure 12E5 is unstreched when a man starts pulling on the cord.The mass of the
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Find the time period of the oscillation of mass m in figures 12E4 a,b,c what is the equivalent sprin
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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
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A spring stores 5J of energy when stretched by 25cm.It is kept vertical with the lower end fixed.A
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A body of mass 2kg suspended through a vertical spring executes simple harmonic motion of period 4s.
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A block of mass 0.5kg hanging from a vertical spring executes simple harmonic motion of amplitude
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A block suspended from a vertical spring is in equilibrium.Show that the extension of the spring
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Consider a simple harmonic motion of time period T.Calculate the time taken for the displacement to
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The pendulum of a clock is replaced by a spring mass system with the spring having spring constant
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Consider a particle moving in simple harmonic motion according to the equation x=2cos(50πt+tan- 0.75
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The equation of motion of a particle started at t=0 is given by x=5sin(20t+π/3),where x is in cm and
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A particle having mass 10g oscillates according to equation x=2sin(100t+π/6). Find the amplitude
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A particle having mass 10g oscillates according to equation x=2sin(100t π/6). Find the amplitude
The maximum speed and acceleration of a particle executing simple harmonic motion are 10cm/s and 50
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The maximum speed and acceleration of a particle executing simple harmonic motion are 10cm/s and 50
The position velocity and acceleration of a particle executing simple harmonic motion are found to
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The position velocity and acceleration of a particle executing simple harmonic motion are found to
A particle executes simple harmonic motion with an amplitude of 10cm.At what distance from the mean
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A particle executes simple harmonic motion with an amplitude of 10cm.At what distance from the mean
A block of mass 16kg is moving on a frictionless horizontal surface with velocity 4m/s and comes to
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A block of mass 16kg is moving on a frictionless horizontal surface with velocity 4m/s and comes to
A body is dropped from a height h.When loss in its potential energy is U then its velocity is V.The
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A body is dropped from a height h.When loss in its potential energy is U then its velocity is V.The
A stone is projected vertically up to reach maximum height h.The ratio of its kinetic energy to
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A stone is projected vertically up to reach maximum height h.The ratio of its kinetic energy to
A particle executes simple harmonic motion with an amplitude of 10cm and time period 6s.At t=0 it is
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A particle executes simple harmonic motion with an amplitude of 10cm and time period 6s.At t=0 it is
A mass of 0.5kg moving with a speed of 1.5m/s on a horizontal smooth surface collides with a nearly
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A mass of 0.5kg moving with a speed of 1.5m/s on a horizontal smooth surface collides with a nearly
A particle in a certain conservative force field has a potential energy given by U=20xy/z. The force
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A particle in a certain conservative force field has a potential energy given by U=20xy/z. The force
A projectile is fired at 30° with momentum p, neglecting friction,the change in kinetic energy when
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A projectile is fired at 30° with momentum p, neglecting friction,the change in kinetic energy when
A ball of mass 2kg and another of mass 4kg are dropped together from a 60 feet tall building.After a
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A ball of mass 2kg and another of mass 4kg are dropped together from a 60 feet tall building.After a
A 0.5kg ball is thrown up with an initial speed 14m/s and reaches a maximum height of 8m How much
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A 0.5kg ball is thrown up with an initial speed 14m/s and reaches a maximum height of 8m How much
Velocity time graph of a particle of mass 2kg moving in a straight line as shown in fig.Work done by
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Velocity time graph of a particle of mass 2kg moving in a straight line as shown in fig.Work done by
The graph between kinetic energy and velocity V is
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The graph between kinetic energy and velocity V is

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