Embibe Experts Solutions for Chapter: Gravitation, Exercise 1: JEE Advanced Paper 2 - 2014
Embibe Experts Physics Solutions for Exercise - Embibe Experts Solutions for Chapter: Gravitation, Exercise 1: JEE Advanced Paper 2 - 2014
Attempt the free practice questions on Chapter 7: Gravitation, Exercise 1: JEE Advanced Paper 2 - 2014 with hints and solutions to strengthen your understanding. EMBIBE CHAPTER WISE PREVIOUS YEAR PAPERS FOR PHYSICS solutions are prepared by Experienced Embibe Experts.
Questions from Embibe Experts Solutions for Chapter: Gravitation, Exercise 1: JEE Advanced Paper 2 - 2014 with Hints & Solutions
The distance between two stars of masses and is . Here is the mean distance between the centres of the Earth and the Sun, and is the mass of the Sun. Two stars orbit around their common centre of mass in circular orbits with period , where is the period of Earth's revolution around the Sun.
The value of is _____.

A rocket is launched normal to the surface of the Earth, away from the Sun, along the line joining the Sun and the Earth. The Sun is times heavier than the Earth and is at a distance times larger than the radius of the Earth. The escape velocity from Earth's gravitational field is . The minimum initial velocity required for the rocket to be able to leave the Sun-Earth system is closest to
(Ignore the rotation and revolution of the Earth and the presence of any other planet)

A spherical body of radius consists of a fluid of constant density and is in equilibrium under its own gravity. If is the pressure at , then the correct option(s) is (are)

A planet of radius (radius of Earth) has the same mass density as Earth. Scientists dig a well of depth on it and lower a wire of the same length and of linear mass density into it. If the wire is not touching anywhere, the force applied at the top of the wire by a person holding it in place is (take the radius of Earth and the acceleration due to gravity of Earth is )

Two bodies, each of mass , are kept fixed with a separation of . A particle of mass is projected from the midpoint of the line joining their centers, perpendicular to the line. The gravitational constant is . The correct statement (s) is (are) :

Consider a spherical gaseous cloud of mass density in free space where is the radial distance from its center. The gaseous cloud is made of particles of equal mass m moving in circular orbits about the common center with the same kinetic energy . The force acting on the particles is their mutual gravitational force. If is constant in time, the particle number density is: [ is universal gravitational constant]
