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The force of gravity causes all objects near the earth's surface to fall with exactly 9.80665 m/s2 (approx. 32.174 ft/s2). The statement in the question is accurate except for the actual magnitude of the earth's gravitational constant. The earth's gravitational constant g (or go or gn) is 9.80665 meters per second squared per international agreement. A link is provided to the Wikipedia article with the figure stated along with particulars and other related links.

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What is the acceleration of an object approaching the earths surface?

Because gravity is not uniform across the entire surface of the earth and the centripetal force varies noticeably with latitude, the acceleration varies from point to point on Earth. At different points on Earth, objects fall with an acceleration between 9.78 and 9.82 m/s2 depending on latitude, with a conventional standard value of exactly 9.80665 m/s2 (approx. 32.174 ft/s2).


How does the force due to gravity on Mars compare to the force due to gravity on Earth?

The acceleration of gravity at the surface of Mars is approximately 3.7 m/s2. Earth's acceleration is 9.8 m/s2 on average. The force that gravity would exert on an object is dependent on its mass.


What is the acceleration of an object in a free fall at Earth's surface?

The acceleration of an object in free fall at Earth's surface is approximately 9.81 m/s^2, directed downward towards the center of the Earth. This value is often denoted as the acceleration due to gravity (g) and is constant near the surface of the Earth.


What will gravity do to a falling object on earth and the moon?

Wow. That is one of the great unanswered questions of Physics. Nobody knows how gravity works. People have, over the centuries, formulated natural laws that describe the behavior of objects under the influence of gravity; Galileo Galilei, Issac Newton, and Albert Einstein for example.Look it up on wikipedia. Go to http://en.wikipedia.org/, and search for Gravity.


Why don't we notice a difference between mass and weight on earth?

We don't notice a difference between mass and weight on Earth because the acceleration due to gravity is constant on the surface of the Earth. Weight is the force of gravity acting on an object's mass, so as long as the acceleration due to gravity remains constant, the weight of an object will be proportional to its mass.

Related Questions

The acceleration of gravity on the surface of a planet will effect a person or objects?

The acceleration of gravity on a planet determines how fast an object will fall when dropped, affecting the weight of objects on the surface. This acceleration also impacts the force needed for objects to stay grounded or lifted from the surface. Overall, gravity's acceleration is essential in understanding an object's behavior on the planet's surface.


Why does and object accelerate when it falls toward Earth's surface?

An object accelerates when it falls towards Earth's surface due to the force of gravity acting on it. Gravity causes a constant acceleration of 9.8 m/s^2, pulling the object towards the center of the Earth. As the object falls, the force of gravity remains constant, leading to a continuous increase in the object's speed and acceleration.


Near the surface of the earth what is the acceleration of an object due to the force of gravity?

On the surface of the Earth, the acceleration of an object due to the force of gravity is approximately 9.81 m/s^2. This value is also known as the acceleration due to gravity and is crucial in understanding the free fall of objects near Earth's surface.


What is the magnitude of the acceleration of an object in free fall near earth's surface?

The magnitude of acceleration of an object in free fall near the Earth's surface is approximately 9.81 m/s^2. This acceleration is due to gravity and causes the object to accelerate downward at a constant rate.


The acceleration of gravity on the surface of a planet will effect a person's or object's what?

weight


What force causes an object to have weight?

Gravity is the force that causes an object to have weight. The weight of an object is the gravitational force acting on it. The magnitude of the weight depends on the mass of the object and the acceleration due to gravity at that location.


Is Mercurys gravity stronger or weaker than earth?

The acceleration of gravity ... and therefor the weight of any object ... on thesurface of Mercury is 37.698% of its value on the surface of Earth. (rounded)


Explain the relationship between the acceleration due to gravity of an falling object and the slope?

The force of gravity on object can differ because of its slope. An object can pick up quick acceleration at a steep slope due to the force of gravity than normal slopes. We say that gravity is force of attraction between the body and the surface of the earth. at a slope gravity attracts the object to itself. The gravitational force is 9.8N. when gravity attracts the object to itself than for sure the object will gain acceleration but the acceleration rate of the object will differ by the slope that it has been pulled.


How are acceleration and gravity related?

Acceleration due to gravity is the rate at which an object speeds up while falling towards the Earth. This acceleration is approximately 9.81 m/s^2 near the Earth's surface. Gravity causes objects to accelerate towards the center of the Earth, leading to phenomena like free fall and weightlessness.


What is the answer Near the surface of Earth what is the acceleration of an object due to the force of gravity?

The acceleration of an object near the surface of Earth due to gravity is approximately 9.81 m/s^2. This value is known as the acceleration due to gravity and is constant for all objects at that location.


What is the gravity related to earth of Venus?

On the surface of Venus, the acceleration of gravity, and therefore the weight of any object, is 90.3 percent of what it is on the surface of Earth.


How would you define acceleration due to gravity?

Acceleration due to gravity is the rate at which an object accelerates towards the Earth when falling freely under gravity. It has a constant value of approximately 9.81 m/s^2 near the surface of the Earth.