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Bulge that takes place on parts of earth facing or opposite the moon is called?

The bulge that occurs on Earth facing or opposite the Moon is called a tidal bulge. This is due to the gravitational attraction between the Earth and the Moon causing a stretching effect on the water on Earth's surface, leading to the formation of high tides.


What is a aqueous bulge?

An aqueous bulge is a bulge that occurs in water. There is one on each side of the earth, one facing the moon and the other facing away from the moon, causing tides to occur.


Does gravity causes Earth's land water and atmosphere to bulge slighty toward the moon?

Yes, gravity from the Moon causes a slight bulge in Earth's land, water, and atmosphere. This is known as "tidal bulging." The gravitational pull of the Moon creates a force that stretches Earth's surface slightly towards the Moon, leading to high tides on the side of Earth facing the Moon and on the opposite side.


What effect of the earth-moon system causes the water bulge on the side of the earth farthest from the moon?

The moon's gravity attracts the water.


How does the moon afect the waters of the earth?

The gravitational pull of the moon causes ocean tides by attracting the water towards it. This creates a bulge of water on the side of the Earth facing the moon, and a second bulge on the opposite side. As the Earth rotates, different parts of the world experience high and low tides.


What side of earth do low tides occur?

Low tides can happen anywhere. Wherever the moon goes it lifts earth's water up a little (closest to it. The water also rises on the other side of Earth which is strange) and the sides of Earth not facing the moon lower a little.


What causes the water on the opposite of earth to rise up during a hide tide?

The water on the side of the earth opposite the sun/moon also rises during high tide because not only is the water pulled by the moon and sun's gravity, but the earth itself is also pulled. This causes there to be a bulge of water on the oppposite side of the earth as well.


How does the moon create a bulge in the Earth's oceans?

The moon's gravitational pull causes a bulge in the Earth's oceans by attracting water towards it, creating high tides.


On what sides does bulge in the earth's oceans appear on earth?

The bulges in the Earth's oceans, known as tidal bulges, occur on the side of the Earth facing the Moon and the side opposite the Moon. The gravitational pull of the Moon causes water to be drawn toward it, creating a bulge on the near side. Simultaneously, a second bulge forms on the far side due to the inertia of the water, as the Earth is pulled slightly toward the Moon. This results in high tides in both locations, while areas perpendicular to these bulges experience low tides.


What is the effect of the moon's revolution?

A major effect of the Moon's revolution around the Earth is the tides. The gravity of the Moon (and of the Sun, too) pull on the Earth's oceans.The oceans bulge outward on the side facing the Moon and the opposite side of the Earth - shorelines underneath the bulge experience high tide. This bulge is called the tidal bulge. The Earth rotates underneath the bulge, pushing the bulge ahead of the Moon -- the tidal bulge then has a gravitational pull of its own on the Moon. This effect boosts the Moon in orbit. Meanwhile, the friction of the tidal bulge on the Earth's rotation causes the Earth to very slightly slow down.Therefore, because of the effects of the Moon's revolution around the Earth, the Earth's day is getting slightly longer, and the Moon is getting slightly farther away from Earth.


What causes the Moon's high tides?

The Moon's high tides are caused by its gravitational pull on Earth's water. As the Moon orbits Earth, it creates a bulge in the water on the side facing the Moon, causing a high tide. There is also a second high tide on the opposite side of Earth due to the centrifugal force from Earth's rotation.


Bulge that takes place on parts of earth facing or opposite the moon?

This bulge is caused by gravitational forces between the Earth and the Moon, creating tidal forces that deform the Earth's surface. It results in ocean tides rising and falling as water is drawn toward the bulging areas.