Home
Class 11
PHYSICS
Two blocks A (5 kg) and B( 5kg) attached...

Two blocks `A (5 kg)` and `B( 5kg)` attached to the ends of a spring constant `1000 N//m` are placed on a smooth horizontal plane with the spring undeformed . Simultaneously velocities of `10m//s` and `4m//s` along the line of the spring in the same direction are imparted to` A` and `B` then

A

When the extension of the spring is maximum the velocities of `A` and `B` are same.

B

the maximum extension of the spring is `30cm`.

C

the first maximum compression occurs `pi//56` seconds after start.

D

maximum compression and maxium extension occurs alternately.

Text Solution

Verified by Experts

The correct Answer is:
A, B, D

`(1)/(2)(m_(1)m_(2))/(m_(1)+m_(2))(V_(1)-V_(2))^(2)=(1)/(2)kx^(2)`
`(1)/(2)((5)(5))/(5+5)(10-4)^(2)=(1)/(2)xx1000x^(2)`
`2.5(36)=(1000)x^(2)`
`((25)(36)xx10^(-1))/(1000)=x^(2)`
`((25)(36))/(10000)=x^(2)`
`((5)(6))/(10)=x^(2)`
`x=0.30m`
Also `omega=sqrt((k)/(mu))=sqrt((1000)/(((5)(5))/(5+5)))`
`omega=20 sec. `
`T=(2pi)/(20)=(pi)/(10)`
The first maximum compression occurs `(T)/(4)=(pi)/(40)sec.` after start.
Promotional Banner

Topper's Solved these Questions

  • DAILY PRACTICE PROBLEMS

    RESONANCE ENGLISH|Exercise dpp 69|5 Videos
  • DAILY PRACTICE PROBLEMS

    RESONANCE ENGLISH|Exercise comprehension|127 Videos
  • DAILY PRACTICE PROBLEMS

    RESONANCE ENGLISH|Exercise dpp 67|2 Videos
  • CURRENT ELECTRICITY

    RESONANCE ENGLISH|Exercise Exercise|53 Videos
  • ELASTICITY AND VISCOCITY

    RESONANCE ENGLISH|Exercise Advanced Level Problems|9 Videos

Similar Questions

Explore conceptually related problems

Two blocks A (5kg) and B (2kg) attached to the ends of a spring constant 1120 N//m are placed on a smooth horizontal plane with the spring unreformed. Simulataneously velocities of 3 m//s and 10 m//s along the line of the spring in the same direction are imparted to A and B then

a block of mass 0.1 kg attached to a spring of spring constant 400 N/m pulled horizontally from x=0 to x_1 =10 mm. Find the work done by the spring force

Two blocks A(3 kg) and B(2 kg) resting on a smooth horizontal surface is connected by a spring of stiffness 480N//m . Initially the spring is underformed and a velocity of 2 m//s is imparted to A along the line of the spring away from B. The maximum extension in meters of the spring during subsequent motion is :-

Two blocks of masses 6 kg and 3 kg are attached to the two ends of a massless spring of spring constant 2 pi^(2) N//m . If spring is compressed and released on a smooth horizontal surface then find the time period (in seconds) of each block.

Two blocks of masses 7 kg and 3 kg are connected by a spring of stiffness 1000Nm^(-1) and placed on a smooth horizontal surface. They are acted by horizontal forces of 72 N and 32 N in opposite directions as shown in the figure. When accelerations of the blocks are equal and constant, the extension of the spring is

Two blocks of masses m_1 =1kg and m_2 = 2kg are connected by a spring of spring constant k = 24 N/m and placed on a frictionless horizontal surface. The block m_(1) is imparted an initial velocity v_(0) = 12cm/s to the right. The amplitude of oscillation is

Two blocks of masses m_(1) = 2kg and m_(2) = 4kg are attached to two ends of a light ideal spring of force constant k = 1000 N // m. The system is kept on a smooth inclined plane inclined at 30^(@) with horizontal. The block m_(2) is attached to a light string whose other end is connected to a mass m_(3) = 1 kg . A force F = 15N is applied on m_(1) and the system is released from rest. Assume initially the spring is at relaxed position and the system is released from rest. Find the (a) maximum extension of the spring. (

Two blocks of mass 2 kg and 4 kg are accelerated with same acceleration by a force 10 N as shown in figure on a smooth horizontal surface. Then the spring force between the two blocks will be (spring is massless)

Two blocks A and B of mass m and 2m respectively are connected by a light spring of force constant k. They are placed on a smooth horizontal surface. Spring is stretched by a length x and then released. Find the relative velocity of the blocks when the spring comes to its natural length

A block attached with an ideal spring is kept on a smooth horizontal surface. Now the free end of the spring is pulled with a constant velocity u horizontally. Then the maximum energy stored in the spring and bock system during subsequent motion is :