g = 9.81 m/s2 = 32.2 ft/s2
the above is a wrong answer. that's g on the surface of the earth.
g varies and actually decreases as we move up or down the surface. g at the centre of any spherical body due to it's own mass is 0. So g at the centre of earth is zero.
No. At the centre of the earth the acceleration due to gravity is ZERO
Acceleration due to the earth's gravity is zero at the center of the Earth because at that point the mass of the earth is equally distributed in all directions, so pulling equally in all directions for a net zero pull. Simplistically, acceleration due to gravity decreases as distance from the center decreases. At the center the distance is zero, hence gravity is zero.
The factors influencing acceleration due to gravity are the mass of the object and the distance from the center of the Earth. Objects with more mass experience a stronger gravitational force, which leads to a higher acceleration due to gravity. Additionally, the acceleration due to gravity decreases as the distance between the object and the center of the Earth increases.
The acceleration due to gravity decreases as you move farther away from the center of the Earth. This is because gravity weakens with distance according to the inverse-square law.
At the center of earth or any other heavenly body.
Yes, the acceleration due to gravity on both small and big stones is equal because it depends only on the mass of the Earth and the distance from its center. The mass of the stone does not affect the acceleration due to gravity.
It's toward the center of the Earth. We call that direction "down".
The acceleration of gravity due to a single object is(Universal gravitational constant) x (Mass of the object)/(distance from the object's center of mass)2
acceleration due to gravity of earth is 9.8ms-2
The acceleration due to gravity varies depending on your location on Earth because gravity is stronger closer to the center of the Earth due to the mass underneath you. This means that at different latitudes and elevations the gravitational force experienced by an object will be different.
Acceleration due to gravity is greater at the surface of the Earth compared to higher altitudes or in outer space. This is because the force of gravity is stronger closer to the center of mass of an object, such as the Earth.
No, acceleration due to gravity does not change the weight of an object. Weight is determined by the mass of the object and the acceleration due to gravity in that location. The acceleration due to gravity affects the force with which an object is pulled toward the center of the Earth, leading to its weight.