Home
Class 10
PHYSICS
A person is standing on a tall ladder. I...

A person is standing on a tall ladder. If his distance from the centre of the earth is 2R, what will be his weight ?

Promotional Banner

Topper's Solved these Questions

  • GRAVITATION

    BAL BHARTI|Exercise Can you tell?|1 Videos
  • GRAVITATION

    BAL BHARTI|Exercise Exercise |15 Videos
  • GRAVITATION

    BAL BHARTI|Exercise Can you recall?|4 Videos
  • EFFECTS OF ELECTRIC CURRENT

    BAL BHARTI|Exercise Exercise |17 Videos
  • HEAT

    BAL BHARTI|Exercise Exercise|22 Videos

Similar Questions

Explore conceptually related problems

Suppose you are standing on a tall ladder. If your distance from the centre of the earth is 2 R, what will be your weight ?

Suppose your are standing on a tall ladder. If your distance from the centre of the Eart is 2R, what will be your weight?

Suppose you are standing on a tall ladder.If your from the centre of the Earth is 2R,what will be your weight?

A body is taken from the centre of the Earth to the Moon. What will be the changes in the weight of the body?

A satellite revolves around the earth along circular path. If the mass of the satellite is 1000 kg and its distance from the centre of the earth is 20000 km, find the magnitude of the earth's gravitational force acting on the satellite.

The dependence of acceleration due to gravity g on the distance r from the centre of the earth, assumed to be a sphere of radius R of uniform density is as shown in Fig. below: The correct figure is

Find the acceleration due to gravity at a distance of 20000 km from the centre of the earth.

If R= radius of the earth and g= acceleration due to gravity on the surface of the earth, the acceleration due to gravity at a distance (r gt R) from the centre of the earth is proportional to

The variation of acceleration due to gravity g with distance d from centre of the earth is best represented by (R=Earth's radius)

M_e is the mass of earth and M_m is the mass of moon ( M_e=81 M_m ). The potential energy of an object of mass m is a distance R from the Centre of earth and r from the centre of moon, will be