Part 1
Two particles P and Q start from origin and execute S.H.M along x-axis with same amplitude but with periods 3 seconds and 6 seconds respectively. The ratio of the velocities of P and Q when they are at mean position is
30
Oct
Two particles P and Q start from origin and execute S.H.M along x-axis with same amplitude but with periods 3 seconds and 6 seconds respectively. The ratio of the velocities of P and Q when they are at mean position is Time period of a particle executing SHM is 8 sec. At t=0 it is [...]
Time period of a particle executing SHM is 8 sec. At t=0 it is at the mean position. The ratio of the distance traveled by it in the 1st and the 2nd second is :
30
Oct
Time period of a particle executing SHM is 8 sec. At t=0 it is at the mean position. The ratio of the distance traveled by it in the 1st and the 2nd second is : Time period of a particle executing SHM is 8 sec. At t=0 it is at the mean position. The ratio [...]
For a simple pendulum, graph between length and time period will be a
30
Oct
For a simple pendulum, graph between length and time period will be a For a simple pendulum graph between length and time period will be a October 30, 2020 Category: Cengage NEET by C.P Singh , Chapter 13 - Simple Harmonic Motion , Part 1 ,
A particle is executing is SHM. Then the graph of velocity as a function of displacement is
30
Oct
A particle is executing is SHM. Then the graph of velocity as a function of displacement is A particle is executing is SHM. Then the graph of velocity as a function of displacement is October 30, 2020 Category: Cengage NEET by C.P Singh , Chapter 13 - Simple Harmonic Motion , Part 1 ,
A particle is executing is SHM. Then the graph of acceleration as a function of displacement is
30
Oct
A particle is executing is SHM. Then the graph of acceleration as a function of displacement is A particle is executing is SHM. Then the graph of acceleration as a function of displacement is October 30, 2020 Category: Cengage NEET by C.P Singh , Chapter 13 - Simple Harmonic Motion , Part 1 ,
The equation of SHM of a particle is d^2y/dt^2+ky=0, where k is a positive constant. The time period of motion is
30
Oct
The equation of SHM of a particle is d^2y/dt^2+ky=0, where k is a positive constant. The time period of motion is The equation of SHM of a particle is d^2y/dt^2+ky=0 where k is a positive constant. The time period of motion is October 30, 2020 Category: Cengage NEET by C.P Singh , Chapter 13 - [...]
A particle is vibrating in SHM. If its velocities are v1 and v2 when the displacements from the mean position are y1 and y2, respectively, then its time period is
30
Oct
A particle is vibrating in SHM. If its velocities are v1 and v2 when the displacements from the mean position are y1 and y2, respectively, then its time period is A particle is vibrating in SHM. If its velocities are v1 and v2 when the displacements from the mean position are y1 and y2 respectively [...]
A body of mass 5g is executing SHM with amplitude 10cm, its velocity is 100cm/s. Its velocity will be 50cm/s at a displacement from the mean position equal to
30
Oct
A body of mass 5g is executing SHM with amplitude 10cm, its velocity is 100cm/s. Its velocity will be 50cm/s at a displacement from the mean position equal to A body of mass 5g is executing SHM with amplitude 10cm its velocity is 100cm/s. Its velocity will be 50cm/s at a displacement from the mean [...]
A particle is executive simple harmonic motion given by x=5sin(4t−π/6) The velocity of the particle when its displacement is 3 units is
29
Oct
A particle is executive simple harmonic motion given by x=5sin(4t−π/6) The velocity of the particle when its displacement is 3 units is A particle is executive simple harmonic motion given by x=5sin(4t−π/6) The velocity of the particle when its displacement is 3 units is October 29, 2020 Category: Cengage NEET by C.P Singh , Chapter [...]
The average acceleration in one time period in a simple harmonic motion is
29
Oct
The average acceleration in one time period in a simple harmonic motion is The average acceleration in one time period in a simple harmonic motion is October 29, 2020 Category: Cengage NEET by C.P Singh , Chapter 13 - Simple Harmonic Motion , Part 1 ,