Earth's oceans bulge primarily on the side of the planet that faces the Moon due to its gravitational pull, creating a high tide in that area. Additionally, there is a second bulge on the opposite side of the Earth, which occurs due to the centrifugal force resulting from the Earth-Moon system's rotation. These two bulges lead to the regular rise and fall of sea levels known as tides.
The gravitational forces of the Sun and Moon, effect the earths oceans by forming tides.
No the Earth would pull u more than the moon
Yes, that's basically what causes tides. ===================== And the moon. Lets not forget its role.
When you reach beyond Earth's gravitational pull, you enter outer space. Objects in space continue to be influenced by the gravitational forces of other celestial bodies such as the sun, planets, and stars. Becoming free from Earth's gravitational pull allows spacecraft to travel to other planets and explore the universe.
The gravitational force is what holds the Earth-Moon system together. Earth's gravity pulls the Moon toward it, creating a stable orbit. Simultaneously, the Moon's gravity exerts a pull on the Earth, affecting tides and contributing to the dynamic relationship between the two bodies. This mutual gravitational attraction is essential for maintaining the orbital balance of the system.
No. Mass is the quantity of actual stuff of which an object is composed.The force of gravitational attraction between the Earth and the object'smass is called the object's "weight" on Earth.
The moons gravitational attraction is weaker as the moon is smaller
if the sun turned into a black hole we would be gone in seconds... it wouldn't matter Another answer: The Earth gravitational attraction would remain the same. Sun's gravitational attraction would also remain the same. Why? Because their mass would remain the same.
because the gravitational attraction of moon is very low(about 1/6th of earths') which is not sufficient to hold the air molecules to form atmosphere.
No. There is a gravitational force of attraction between every two masses in the universe. The strongest pair of forces you feel is the pair between you and the earth, which you call your "weight". It would be there even if the sun were not there.
All objects within the universe attract all other objects through gravity. as distance increases this attraction lessens to an insignificant amount, however the force is still there. therefore the Earth's gravitational field's range is limitless.
-- Take an object of known mass, such as a liter of water.-- Measure the force of gravitational attraction between it and the earth, by placing it on a scale and "weighing" it.-- Knowing the distance from the center of the earth (earth's "radius") and the value of the Gravitational constant,and using the formula for the gravitational force between two masses, the earth's mass can now be calculated.
Less than one tenth (1/10) of the earths gravitational pull.
it is 10N/Kg
WIEGHT
yes
9.8 N/kg