The gravitational force of the sun is many thousands of times greater than that of Earth. This is due to the enormous difference in mass between the two.
The gravitational force of Earth is about 6 times greater than that of the Moon. This means that an object on Earth weighs about 6 times more than it would on the Moon due to the difference in gravitational pull between the two bodies.
The gravitational force between an object and the Earth depends on their masses. Since an elephant has a much greater mass than a human, the gravitational force between the elephant and the Earth is stronger than that between you and the Earth. Therefore, the elephant experiences a stronger gravitational pull from the Earth compared to you.
There are two reasons: The Earth is more massive than the Moon, and the Earth is closer to you than the Moon. If you were standing on the Moon, then the force of gravity due to the Moon would be greater because you are closer to the Moon.
Gravitational force of the moon is 1/6th the gravitational force of the Earth. The larger the object, the greater gravitational force it will have.
mass. Gravitational force is directly proportional to the mass of an object, so Earth's greater mass results in a stronger gravitational pull compared to the moon.
The gravitational force of Earth is about 6 times greater than that of the Moon. This means that an object on Earth weighs about 6 times more than it would on the Moon due to the difference in gravitational pull between the two bodies.
Absolutely not.
The gravitational force between an object and the Earth depends on their masses. Since an elephant has a much greater mass than a human, the gravitational force between the elephant and the Earth is stronger than that between you and the Earth. Therefore, the elephant experiences a stronger gravitational pull from the Earth compared to you.
The Earth's gravitation force is greater than the Moon, which keeps the Moon in orbit round the Earth.
No, the gravitational force experienced by an object is determined by its mass and the mass of the Earth, not its size. Both an elephant and a mouse feel the same gravitational pull towards the Earth.
The gravitational force between two objects depends on their masses and distance. Although the sun exerts the same gravitational force on both Earth and Mars due to their masses, this force is stronger on Mars because it is closer to the sun compared to Earth's distance. This makes the gravitational force between the sun and Mars greater than that between the sun and Earth.
The truck has a greater gravitational force than an egg. Gravitational force depends on the mass of an object, so the truck’s larger mass leads to a greater gravitational force compared to the egg.
There are two reasons: The Earth is more massive than the Moon, and the Earth is closer to you than the Moon. If you were standing on the Moon, then the force of gravity due to the Moon would be greater because you are closer to the Moon.
Earth exerts a stronger gravitational force than the moon due to its larger mass. The force of gravity is directly proportional to an object's mass, so Earth's greater mass results in a stronger gravitational pull compared to the moon.
The gravitational acceleration at the surface of Neptune is 11.0 meters (36.1 ft) per second2.That's about 12.2% greater than at the earth's surface.The gravitational force on an object (the object's 'weight') on Neptune depends on the object's mass.The force ('weight') will be 12.2% greater than the force (the object's 'weight') on earth.
Gravitational force of the moon is 1/6th the gravitational force of the Earth. The larger the object, the greater gravitational force it will have.
mass. Gravitational force is directly proportional to the mass of an object, so Earth's greater mass results in a stronger gravitational pull compared to the moon.