Home
Class 11
PHYSICS
Each situation in Table-1 gives graph of...

Each situation in Table-1 gives graph of a particle moving in circular path. The variables `omega, theta` and t represent angular speed (at any time t), angular displacement (in time t) and time respectively. Table-2 gives certain resulting interpretation. Match the graphs in Table-1 with statements in Table-2.

0

Text Solution

Verified by Experts

The correct Answer is:
(A)QS,(B)P,(C)P,(D)QR
Promotional Banner

Topper's Solved these Questions

  • CIRCULAR MOTION

    DC PANDEY ENGLISH|Exercise Integer|7 Videos
  • CIRCULAR MOTION

    DC PANDEY ENGLISH|Exercise Check point|45 Videos
  • CIRCULAR MOTION

    DC PANDEY ENGLISH|Exercise Comprehension|13 Videos
  • CENTRE OF MASS, LINEAR MOMENTUM AND COLLISION

    DC PANDEY ENGLISH|Exercise Level 2 Subjective|21 Videos
  • COMMUNICATION SYSTEM

    DC PANDEY ENGLISH|Exercise Only One Option is Correct|27 Videos

Similar Questions

Explore conceptually related problems

Table -1 gives some graph for a particle moves along x -axis in positive x -direction. The variables v,x and t represent speed of particle, x -coordinate of particle and time respectively. Table -2 gives certain resulting interpretation. Match the graph in Table -1 with the statements in Table -2.

The magnitude of displacement of a particle moving in a circle of radius a with constant angular speed omega varries with time t is

A particle moves along a circle of radius R with a constant angular speed omega . Its displacement (only magnitude) in time t will be

There are four situations given in Table-1 involving a magnetic dipole of dipole moment M placed in uniform external magnetic field B. Table-2 gives corresponding results. Match the situations in Table-1 with the corresponding results in Table-2.

IF the equation for the displancement of a particle moving on a circular path is given by theta=2t^3+0.5 , where theta is in radius and t is in seconds, then the angular velocity of the particle at t=2 s is

There are two point masses A and B, situated at origin and point (5m,0m) respectively . At a certain time v_(A) and v_(B) are respectively the velocities of point masses A and B . Match the situations under Table-1 with their correct option under Table-2

If the equation for the displacement of a particle moving in a circular path is given by (theta)=2t^(3)+0.5 , where theta is in radians and t in seconds, then the angular velocity of particle after 2 s from its start is

Velocity-time graph of a particle moving in a straight line is shown in figure. Plot the corresponding displacement-time graph of the particle if at time t=0, displacement s=0.

Velocity-time graph of a particle moving in a straight line is shown in figure. Plot the corresponding displacement-time graph of the particle if at time t=0, displacement s=0.

If the equation for the displacement of a particle moving on a circle path is given by, theta = 2t^(2)+0.5 where, theta is in radian and t is in second, then the angular velocity of the particle after 2 s is