Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions)
A block of mass 1 kg hangs without vibrating at the end of a spring whose force constant is 200 N/m and which is attached to the ceiling of an elevator. The elevator is rising with
31
Oct
A block of mass 1 kg hangs without vibrating at the end of a spring whose force constant is 200 N/m and which is attached to the ceiling of an elevator. The elevator is rising with A block of mass 1 kg hangs without vibrating at the end of a spring whose force constant is [...]
In problem 27, the maximum displacement and acceleration of the particle are respectively:
31
Oct
In problem 27, the maximum displacement and acceleration of the particle are respectively: In problem 27 the maximum displacement and acceleration of the particle are respectively. October 31, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
In problem 27, the acceleration of the particle is
31
Oct
In problem 27, the acceleration of the particle is In problem 27 the acceleration of the particle is October 31, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
In problem 27, the displacement of the particle from the mean position corresponding to the instant mentioned is
30
Oct
In problem 27, the displacement of the particle from the mean position corresponding to the instant mentioned is In problem 27 the displacement of the particle from the mean position corresponding to the instant mentioned is October 30, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
The variation of velocity of a particle executing SHM with time is shown in the figure. The velocity of the particle when a phase change of pie/6 takes place from the instant it is at one
30
Oct
The variation of velocity of a particle executing SHM with time is shown in the figure. The velocity of the particle when a phase change of pie/6 takes place from the instant it is at one The variation of velocity of a particle executing SHM with time is shown in the figure. The velocity of [...]
A certain simple harmonic vibrator of mass 0.1 kg has a total energy of 10 J. Its displacement from the mean position is 1 cm when it has equal kinetic and potential energies. The amplitude
30
Oct
A certain simple harmonic vibrator of mass 0.1 kg has a total energy of 10 J. Its displacement from the mean position is 1 cm when it has equal kinetic and potential energies. The amplitude A certain simple harmonic vibrator of mass 0.1 kg has a total energy of 10 J. Its displacement from the [...]
The potential energy of a simple harmonic oscillator of mass 2 kg in its mean position is 5 J. If its total energy is 9 J and its amplitude is 0.01 m, its time period would be
30
Oct
The potential energy of a simple harmonic oscillator of mass 2 kg in its mean position is 5 J. If its total energy is 9 J and its amplitude is 0.01 m, its time period would be its time period would be The potential energy of a simple harmonic oscillator of mass 2 kg in [...]
In the above question, the speed of the particle at origin will be
30
Oct
In the above question, the speed of the particle at origin will be In the above question the speed of the particle at origin will be October 30, 2020 Category: Uncategorised (JEE Advanced Physics by BM Sharma + GMP Solutions) ,
The acceleration of a particle moving along x-axis is a = -100x + 50. It is released from x = 2. Here ‘a’ and ‘x’ are in SI units. The motion of particle will be
30
Oct
The acceleration of a particle moving along x-axis is a = -100x + 50. It is released from x = 2. Here ‘a’ and ‘x’ are in SI units. The motion of particle will be The acceleration of a particle moving along x-axis is a = -100x + 50. It is released from x = [...]
A horizontal spring-block system of mass 2 kg executes SHM. When the block is passing through its equilibrium position, an object of mass 1 kg is put on it and the two move together.
30
Oct
A horizontal spring-block system of mass 2 kg executes SHM. When the block is passing through its equilibrium position, an object of mass 1 kg is put on it and the two move together. A horizontal spring-block system of mass 2 kg executes SHM. When the block is passing through its equilibrium position an object [...]