360053
Statement A :
When distance between two bodies is doubled and also mass of each body is doubled, gravitational force between them remains the same.
Statement B :
According to Newton's law of gravitation, force is directly proportional to product of the mass of bodies and inversely proportional to the square of the distance between them.
360056
Four identical particles of mass \(M\) are located at the corners of a square of side ' \(a\) '. If each of them revolves under the influence of others gravitational field in a circular orbit circumscribing the square, their speed is found to be \(Q\) times \(\sqrt {\frac{{GM}}{a}} .\) The value of \(Q\) is
360053
Statement A :
When distance between two bodies is doubled and also mass of each body is doubled, gravitational force between them remains the same.
Statement B :
According to Newton's law of gravitation, force is directly proportional to product of the mass of bodies and inversely proportional to the square of the distance between them.
360056
Four identical particles of mass \(M\) are located at the corners of a square of side ' \(a\) '. If each of them revolves under the influence of others gravitational field in a circular orbit circumscribing the square, their speed is found to be \(Q\) times \(\sqrt {\frac{{GM}}{a}} .\) The value of \(Q\) is
360053
Statement A :
When distance between two bodies is doubled and also mass of each body is doubled, gravitational force between them remains the same.
Statement B :
According to Newton's law of gravitation, force is directly proportional to product of the mass of bodies and inversely proportional to the square of the distance between them.
360056
Four identical particles of mass \(M\) are located at the corners of a square of side ' \(a\) '. If each of them revolves under the influence of others gravitational field in a circular orbit circumscribing the square, their speed is found to be \(Q\) times \(\sqrt {\frac{{GM}}{a}} .\) The value of \(Q\) is
360053
Statement A :
When distance between two bodies is doubled and also mass of each body is doubled, gravitational force between them remains the same.
Statement B :
According to Newton's law of gravitation, force is directly proportional to product of the mass of bodies and inversely proportional to the square of the distance between them.
360056
Four identical particles of mass \(M\) are located at the corners of a square of side ' \(a\) '. If each of them revolves under the influence of others gravitational field in a circular orbit circumscribing the square, their speed is found to be \(Q\) times \(\sqrt {\frac{{GM}}{a}} .\) The value of \(Q\) is
360053
Statement A :
When distance between two bodies is doubled and also mass of each body is doubled, gravitational force between them remains the same.
Statement B :
According to Newton's law of gravitation, force is directly proportional to product of the mass of bodies and inversely proportional to the square of the distance between them.
360056
Four identical particles of mass \(M\) are located at the corners of a square of side ' \(a\) '. If each of them revolves under the influence of others gravitational field in a circular orbit circumscribing the square, their speed is found to be \(Q\) times \(\sqrt {\frac{{GM}}{a}} .\) The value of \(Q\) is