Home
Class 12
PHYSICS
A mass of 2.0 kg is put on a flat pan at...

A mass of 2.0 kg is put on a flat pan attached to a vertical spring fixed on the ground as shown in the figure. The mass of the spring and the pan is negligible. When pressed slightly and released the mass executes a simple harmonic motion. The spring constant is `200 N//m`. What should be the minimum amplitude of the motion, so that the mass gets detached from the pan ?(Take g = `10 m//s^2`)

A

8.0 cm

B

10.0 cm

C

Any value less than 12.0 cm

D

4.0 cm

Text Solution

Verified by Experts

The correct Answer is:
B
Promotional Banner

Similar Questions

Explore conceptually related problems

A mass of 2.0 kg is put on a flat pan attached to a vertical spring fixed on the ground as shown in figure. The mass of the spring and the pan is negligible. When pressed slightly and realeased the mass executes a simple contant is 200 N//m . What should be the minimum amplitude of the motion, so that the mass gets the detached from the pan? (Take g= 10 m//s^(2))

A mass of 2.0kg is put on a that pan attached to a verticle spring fixed on the ground as shown in the figure The mass of the spring and the pen is neglible the mass executing a simple harmonic motion The spring constant is 200N//m what should be the minimum amplitude of the motion so that the mass get detached from the part? (Taking g = 10m//s^(2))

A paricle of mass 200 g executes a simple harmonic motion. The restorting force is provided by a spring of spring constant 80 N//m . Find the time period.

A solid sphere of mass M and Radius R is attached to a massless spring of force constant k as shown in the figure. The cylinder is pulled towards right slightly and released so that it executes simple harmonic motion of time period. If the cylinder rolls on the horizontal surface without slipping, calculate its time period of oscillation.

A mass M is suspended from a spring of negligible mass. The spring is pulled a little then released, so that the mass executes simple harmonic motion of time period T . If the mass is increased by m , the time period becomes (5T)/(3) . Find the ratio of m//M .

Two identical springs of spring constant k are attached to a block of mass m and to fixed supports as shwon in figure . Show that when the mass is displaced from its equilibrium position on either side, it executes a simple harmonic motion. Find th eperiod of oscillation.

A system consists of two spring and a mass m = 1 kg as shown in figure . If mass m is dispalced slightly along vertical and vertical and released. The system oscillates with a period of 2 s .Then , the spring canstant K is

A particle of mass 'm' is attached to three identical springs A,B and C each of force constant 'K' as shown in figure. If the particle of mass 'm' is pushed slightly against the spring 'A' and released the period of oscillations is