हिंदी
कर्नाटक बोर्ड पी.यू.सी.पीयूसी विज्ञान कक्षा ११

One End of a Spring of Natural Length H And Spring Constant K Is Fixed at the Ground and Other is Fitted with a Smooth Ring of Mass M Which is Allowed to Slide on a Horizontal Rod Fixed at a Height H

Advertisements
Advertisements

प्रश्न

One end of a spring of natural length h and spring constant k is fixed at the ground and the other is fitted with a smooth ring of mass m which is allowed to slide on a horizontal rod fixed at a height h (following figure). Initially, the spring makes an angle of 37° with the vertical when the system is released from rest. Find the speed of the ring when the spring becomes vertical.

संख्यात्मक
Advertisements

उत्तर

\[\theta = 37^\circ,\text{  l = natural length h } \]
Let the velocity be  \['\nu'\] .
 
\[\cos 37^\circ= \frac{\text{BC}}{\text{AC}} = 0 . 8 = \frac{4}{5}\]
\[ A_C = \left( \text{ h + x }\right) = \frac{5\text{h}}{4}\]

Applying the law of conservation of energy,

\[\frac{1}{2}\text{kx}^2 = \frac{1}{2}\text{m } \nu^2 \]

\[ \Rightarrow \nu = \text{x}\sqrt{\left( \frac{\text{k}}{\text{m}} \right)} = \frac{\text{h}}{4} \sqrt{\left( \frac{\text{k}}{\text{m}} \right)}\]

shaalaa.com
  क्या इस प्रश्न या उत्तर में कोई त्रुटि है?
अध्याय 8: Work and Energy - Exercise [पृष्ठ १३६]

APPEARS IN

एचसी वर्मा Concepts of Physics Volume 1 and 2 [English]
अध्याय 8 Work and Energy
Exercise | Q 51 | पृष्ठ १३६

संबंधित प्रश्न

A person trying to lose weight (dieter) lifts a 10 kg mass, one thousand times, to a height of 0.5 m each time. Assume that the potential energy lost each time she lowers the mass is dissipated.

  1. How much work does she do against the gravitational force?
  2. Fat supplies 3.8 x 107J of energy per kilogram which is converted to mechanical energy with a 20% efficiency rate. How much fat will the dieter use up?

Two inclined frictionless tracks, one gradual and the other steep meet at A from where two stones are allowed to slide down from rest, one on each track . Will the stones reach the bottom at the same time? Will they reach there with the same speed? Explain. Given θ1 = 30°, θ2 = 60°, and = 10 m, what are the speeds and times taken by the two stones?


A heavy stone is thrown from a cliff of height h with a speed v. The stoen will hit the ground with maximum speed if it is thrown 


You lift a suitcase from the floor and keep it on a table. The work done by you on the suitcase does not depend on

(a) the path taken by the suitcase
(b) the time taken by you in doing so
(c) the weight of the suitcase
(d) your weight


A small heavy block is attached to the lower end of a light rod of length l which can be rotated about its clamped upper end. What minimum horizontal velocity should the block be given so that it moves in a complete vertical circle?


Figure following shows a light rod of length l rigidly attached to a small heavy block at one end and a hook at the other end. The system is released from rest with the rod in a horizontal position. There is a fixed smooth ring at a depth h below the initial position of the hook and the hook gets into the ring as it reaches there. What should be the minimum value of h so that the block moves in a complete circle about the ring?


A spring of negligible mass and force constant 5 Nm–1 is compressed by a distance x = 5 cm. A block of mass 200 g is free to leave the end of the spring. If the system is released, what will be the speed of the block when it leaves the spring?


A particle is released from height S from the surface of the Earth. At a certain height, its kinetic energy is three times its potential energy. The height from the surface of the earth and the speed of the particle at that instant are respectively ______.


A particle is released from height S from the surface of the Earth. At a certain height, its kinetic energy is three times its potential energy. The height from the surface of the earth and the speed of the particle at that instant are respectively ______


A body is falling freely under the action of gravity alone in vacuum. Which of the following quantities remain constant during the fall?


A mass of 5 kg is moving along a circular path of radius 1 m. If the mass moves with 300 revolutions per minute, its kinetic energy would be ______.


Why is electrical power required at all when the elevator is descending? Why should there be a limit on the number of passengers in this case?


A body falls towards earth in air. Will its total mechanical energy be conserved during the fall? Justify.


A single conservative force acts on a body of mass 1 kg that moves along the x-axis. The potential energy U(x) is given by U (x) = 20 + (x - 2)2, where x is in meters. At x = 5.0 m the particle has a kinetic energy of 20 J, then the maximum kinetic energy of body is ______ J.


A force shown in the F-x graph is applied to a 5 kg cart, which then coasts up a ramp as shown. The maximum height, ymax is ______ m, at which the cart can reach.

(g = 10 m/s2)

  


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×