What is the acceleration due to gravity on the top of Mount Everest?

What is the acceleration due to gravity on the top of Mount Everest?

∴ The acceleration due to gravity on the top of Mount Everest is 9.77 m/s2.

Is gravity stronger at sea level or in the mountains?

The force of gravity is stronger at sea level. The gravitational force, as explained by Newton’s Law of Gravitation, is inversely proportional to the square of the separation between the two masses (or the separation between the centers of mass for the two objects).

What is the acceleration due to gravity on the top of Mt Everest the summit is about 8.8 km above sea level?

Hence, the acceleration due to gravity at a point on Mount Everest is $9.773m/{{s}^{2}}$. Note: The magnitude of acceleration due to gravity decreases as we move above the surface of the earth or down the surface of the earth.

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Is the acceleration due to gravity more or less at the top of Mt Everest than at sea level defend your answer?

The gravitational acceleration is less atop the Mount Everest than at sea level because it is farther from center of Earth than sea level.

What is the ratio of the acceleration due to gravity on the top of Mount Everest to its value at sea level?

(1) What is the force of earth’s gravity on a 1-kg object at the surface of the earth?

Why does acceleration due to gravity vary?

Variation of g due to Shape of Earth As the earth is an oblate spheroid, its radius near the equator is more than its radius near poles. Since for a source mass, the acceleration due to gravity is inversely proportional to the square of the radius of the earth, it varies with latitude due to the shape of the earth.

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Do you mean by acceleration due to gravity?

As per the definition, acceleration due to gravity is the acceleration gained by an object due to the attractive gravitational force between two objects. The S.I. unit of gravity is the same as that of acceleration, hence ms−2. Further on, acceleration due to gravity of earth is a standardized value denoted by (g).

Why is acceleration due to gravity not constant?

As earth is not a perfect sphere, value of gravity g is not a constant at all the locations on the surface of the earth. Also that value of g varies insignificantly if distance between the body and the surface of earth is very small as compared to average radius of the earth.

What is the acceleration due to gravity at sea level?

The acceleration due to gravity is greater at sea level. An astronaut lands on a planet that has twice the mass as Earth and twice the diameter. How does the astronaut’s weight differ from that on Earth?

What is the gravitational attraction of the Apple to the Earth?

The gravitational attraction of the Earth to the apple is identical to the gravitational attraction of the apple to the Earth. Is the acceleration due to gravity more or less atop Mt. Everest than at seal level? The acceleration due to gravity is greater at sea level.

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Where is the force of gravity greatest on the Earth?

In the case of the earth, the force of gravity is greatest on its surface and gradually decreases as you move away from its centre (as a square of the distance between the object and the center of the Earth). Of course, the earth is not a uniform sphere so the gravitational field around it is not uniform.

How does an astronaut’s weight differ from that on Earth?

An astronaut lands on a planet that has twice the mass as Earth and twice the diameter. How does the astronaut’s weight differ from that on Earth? The astronauts weight would be 1/4 of that on Earth. Why does a person in free fall experience weightlessness, while a person falling at terminal velocity does not?