V K Sally and R Goel Solutions for Chapter: Gravitation, Exercise 8: Practice Problems
V K Sally Physics Solutions for Exercise - V K Sally and R Goel Solutions for Chapter: Gravitation, Exercise 8: Practice Problems
Attempt the practice questions on Chapter 3: Gravitation, Exercise 8: Practice Problems with hints and solutions to strengthen your understanding. Core Science Physics For Class 9 solutions are prepared by Experienced Embibe Experts.
Questions from V K Sally and R Goel Solutions for Chapter: Gravitation, Exercise 8: Practice Problems with Hints & Solutions
A satellite is orbiting around the earth at a distance times the radius of the earth from its centre. If the acceleration due to gravity on the earth is , calculate the acceleration due to gravity acting of a spaceship.

A satellite whose distance from the centre of a planet is times the radius of the planet is revolving around it. If the acceleration due to gravity on the surface of the planet is , calculate the magnitude of the acceleration due to gravity of the satellite.

A stone thrown vertically upward takes to attain the maximum height. Calculate,
(i) the initial velocity of the stone.
(ii) the maximum height attained by the stone.
(Take )

A stone thrown vertically upward returns to the thrower in Calculate
(i) the initial velocity of the stone
(ii) the maximum height attained by the stone. Take .

A fielder takes a catch after the player has hit the ball. Assuming that the fielder takes catch at the same height, at which the ball was hit, calculate (i) how high did the ball rise, (ii) the final velocity of the ball. Take .

A wooden block of dimensions is found to weigh . Find the pressure exerted by the block on a tabletop, if it is allowed to lie on the tabletop with its sides .

A wooden block of dimensions is found to weigh . Find the pressure exerted by the block on a tabletop, if it is allowed to lie on the tabletop with its sides .

A block of iron of mass and of the square base of the side is placed on the ground. Find the pressure exerted on the ground?.
