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The gravitational field strength is stronger on Earth than on the Moon primarily due to Earth's larger mass. Gravitational force is proportional to the mass of the object; since Earth has a much greater mass than the Moon, it exerts a stronger gravitational pull. Additionally, the Moon's smaller radius and lower density contribute to its weaker gravitational field. Consequently, objects weigh significantly less on the Moon compared to their weight on Earth.

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Why is the gravitational field strength of earth and moon are different?

The gravitational field strength of Earth and the Moon differs because each celestial body has its own mass and radius. Earth is more massive and has a larger radius compared to the Moon, leading to a stronger gravitational field on Earth. The gravitational field strength decreases with distance from the center of the body, so being closer to Earth results in a stronger gravitational pull compared to being closer to the Moon.


Which is stronger the gravity on earth or the moon?

The gravitational field strength (how strong gravity is) on the Earth is 6 times stronger than on the moon.


Do all planets have the same gravitational field strength as earth?

No, the gravitational field strength on each planet depends on its mass and radius. For example, Jupiter has a stronger gravitational field than Earth due to its larger mass, while Mars has a weaker gravitational field because it is smaller and less massive than Earth.


What does the gravitational field strength on a planet depend on?

The gravitational field strength on a planet depends on its mass and the distance from the planet's center. The greater the planet's mass, the stronger the gravitational field, and the closer you are to the planet's center, the stronger the gravitational field.


Mercury's gravitational field strength?

Mercury's gravitational field strength is approximately 3.7 m/s^2, which is about 38% of Earth's gravitational field strength. This means that objects on the surface of Mercury would weigh less compared to Earth due to the lower gravitational pull.


How is the gravitational field due to the stone related to that due to earth?

The gravitational field due to the stone is much weaker than that due to Earth because of the difference in mass between the two objects. The strength of the gravitational field depends on the mass of the object creating it, so Earth's gravitational field is much stronger due to its significantly larger mass compared to the stone.


What is Moon's gravitational field strength?

The gravitational field strength of the Moon is about 1.6 N/kg, which is about 1/6th of the gravitational field strength on Earth.


What is the value of gravitational field strength on a planet with half Earth's mass and half its radius?

The value of the gravitational field strength on a planet with half the mass and half the radius of Earth would be the same as Earth's gravitational field strength. This is because the gravitational field strength depends only on the mass of the planet and the distance from the center, not on the size or density of the planet.


What is the gravitational field strength of Io?

The gravitational field strength of Io, one of the moons of Jupiter, is approximately 1.796 m/s^2. This value is about 1/6th of Earth's gravitational field strength.


Why there will be a point between the earth and the moon at which the gravitational field strength will be zero?

At a point between the Earth and the Moon where the gravitational field strength is zero, the gravitational pull from the Earth and the Moon cancels out, resulting in a net force of zero. This point is known as the L1 Lagrange point, where the gravitational forces are balanced due to the interaction between the gravitational pull of the Earth and the Moon.


What is meant by gravitational field strength?

Gravitational field strength represents the intensity of the gravitational force experienced by an object at a specific point in space. It is a measure of how strong the force of gravity is at that location and is typically expressed in units of newtons per kilogram. A greater field strength indicates a stronger gravitational pull on objects placed within that field.


What is the gravitional field strength of the earth at its surface?

The gravitational field strength of a planet multiplied by an objects mass gives us the weight of that object, and that the gravitational field strength, g of Earth is equal to the acceleration of free fall at its surface, 9.81ms − 2.