Home
Class 10
PHYSICS
The satellite of mass 1 kg sent by a gro...

The satellite of mass 1 kg sent by a group of students from COEP to space through ISRO in 2016

Text Solution

Verified by Experts

The correct Answer is:
Swayam
Promotional Banner

Similar Questions

Explore conceptually related problems

Name the following Satellite designed by the student of COEP in pune.

The gravitational force on a body of mass 5 kg at the surface of the earth is 50 N. If earth is a perfect sphere, the gravitational force on a satellite of mass 200 kg in a circular orbit of radius same as diameter of the earth is

Solve the following examples / numerical problems: A satellite of mass 100 kg performs uniform circular motion around the earth at a height of 6400 km from the earth's surface . Find its gravitational potential energy. [g=9.8 m/s^2, R=6400 km]

Determine the binding energy of satellite of mass1000 kg revolving in a circular orbit around the earth. Hence, find kinetic energy and potential energy of the satellite,[mass of earth = 6 xlO^24 kg, radius of earth = 6400 km, gravitational constant G = 6.67 xlO^-11 Nm^2//kg^2 ]

A satellite of mass 1000 kg revolves around the earth in a circular path. If the distance between the satellite and the centre of the earth is 40000 km, find the gravitational force exerted on the satellite by the earth.

A satellite of mass m is orbiting the earth (of radius R ) at a height h from its surface. The total energy of the satellite in terms of g_(0) , the value of acceleration due to gravity at the earth's surface,

What is the minimum energy required to launch a satellite of mass m from the surface of a planet of mass M and radius R in a circular orbit at an altitude of 2R?

The critical velocity of a satellite of mass l 00 kg is 20 km/hr. The critical velocity of another satellite of mass 200 kg in the same orbit is

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.