Home
Class 11
PHYSICS
Does the kinetic energy ofa\boay moving ...

Does the kinetic energy ofa\boay moving ipa vertical circular path also remain constant ?

Text Solution

AI Generated Solution

To determine whether the kinetic energy of a body moving in a vertical circular path remains constant, we can analyze the forces acting on the body and how they affect its motion. ### Step-by-Step Solution: 1. **Understanding Vertical Circular Motion**: - In vertical circular motion, a body moves along a circular path while being influenced by gravitational force. 2. **Forces Acting on the Body**: ...
Promotional Banner

Topper's Solved these Questions

  • CIRCULAR MOTION

    ICSE|Exercise MODULE 1 (LONG ANSWER QUESTIONS)|8 Videos
  • CIRCULAR MOTION

    ICSE|Exercise MODULE 1 (SHORT ANSWER QUESTIONS)|33 Videos
  • CIRCULAR MOTION

    ICSE|Exercise MODULE 2 (FROM ROTATIONAL KINETIC ENERGY , WORK ,POWER)|24 Videos
  • COMPETITION CARE UNIT

    ICSE|Exercise OBJECTIVE QUESTIONS FROM PREVIOUS IAS EXAMINATIONS |50 Videos

Similar Questions

Explore conceptually related problems

An object moving in a circular path at constant speed has constant

Answer the following: (a) Write the expression for the force vec(F) acting on a particle of mass m and charge q moving with velocity vecV in a magnetic field vecB . Under what conditions will it move in (i) a circular path and (ii) a helical path ? (b) Show that the kinetic energy of the particle moving a magnetic field remains constant.

A proton, a deuteron and an alpha - particle having the same kinetic energy are moving in circular trajectors in a constant magnetic field. If r_p, r_d and r_(alpha) denote respectively the radii of the trajectories of these particles then

A body is moving in a circular path with a constant speed. It has .

A body is moving in a circular path with a constant speed. It has .

A proton carrying 1 MeV kinetic energy is moving in a circular path of radius R in unifrom magentic field. What should be the energy of an alpha- particle to describe a circle of the same radius in the same field?

A proton carrying 1 MeV kinetic energy is moving in a circular path of radius R in uniform magnetic field. What should be the energy of an alpha- particle to describe a circle of the same radius in the same field?

A proton and an alpha particle move in circular paths in a plane perpendicular to a uniform magnetic field. If the kinetic energy of the two particles is equal, the ratio of the radii of their paths is _________.

An electron having kinetic energy K is moving i a circular orbit of radius R perpendicular to a uniform magnetic induction. If kinetic energy is douled and magnetic induction tripled, the radius will become

Draw a neat labelled diagram for a particle moving in a circular path with a constant speed. In your diagram show the direction of velocity at any instant.