Table of Contents
Does Jupiter have an effect on tides?
Earth’s tides are dominated by the combined effect of the Sun and the Moon’s gravitational pull. Even the giant planet Jupiter exerts a force less than one-tenth that of Venus. So, for all intents and purposes, the effect of the planets on Earth’s tides is imperceptible.
What planets affect tides?
Maximum Tidal Forces of the Sun, Moon, and Planets on the Earth
Solar System Object | Tidal Force |
---|---|
Mars | 0.0000023 |
Mercury | 0.0000007 |
Saturn | 0.0000005 |
Uranus | 0.000000001 |
What would happen to the tidal forces the Moon exerts on earth how would the forces change if the Moon were moved to a position five times farther away than it is now?
Low tides would be lower and high tides would be higher and any low lying coastline would be flooded. If the Moon got much closer, say 20 times closer, it would exert a gravitational force 400 times greater than what we are used to.
How do tides affect the rotation rates of a planet and its satellite moon?
Tidal acceleration is an effect of the tidal forces between an orbiting natural satellite (e.g. the Moon) and the primary planet that it orbits (e.g. Earth). The acceleration causes a gradual recession of a satellite in a prograde orbit away from the primary, and a corresponding slowdown of the primary’s rotation.
What is responsible for the tides?
Gravity is one major force that creates tides. In 1687, Sir Isaac Newton explained that ocean tides result from the gravitational attraction of the sun and moon on the oceans of the earth (Sumich, J.L., 1996). Tidal forces are based on the gravitational attractive force.
What do tides depend on?
The relative distances and positions of the sun, moon and Earth all affect the size and magnitude of the Earth’s two tidal bulges. At a smaller scale, the magnitude of tides can be strongly influenced by the shape of the shoreline.
What influence does Jupiter have on Earth?
While Jupiter often protects Earth and the other inner planets by deflecting comets and asteroids, sometimes it sends objects on a collision course straight toward the inner planets.
How does tidal force affect the water and beaches on Earth?
The tidal force causes Earth—and its water—to bulge out on the side closest to the moon and the side farthest from the moon. These bulges of water are high tides. As the Earth rotates, your region of Earth passes through both of these bulges each day. When you’re in one of the bulges, you experience a high tide.
What might happen if the moon were only half as large as it is now?
What might happen if the moon were only half as large as it is now? There would be no tides. Most areas would receive fewer high tides each day. The ocean level would rise and fall less dramatically.