Gas planets typically rotate faster than Earth. For example, Jupiter rotates the quickest with a day length of about 10 hours, Saturn has a day length of about 10.7 hours, Uranus about 17 hours, and Neptune about 16 hours. In comparison, Earth rotates once every 24 hours.
Nothing will happen because of the gravity
It would effect the earth's electromagnetic field as it is the spinning of the earth's core that creates the field.
Yes, some faster than others. In fact, virtually all spacial bodies rotate.
Actually I dont know, but I guess the rate of everything happeningnow would be twice as fast.
if the earth rotates in the same place
No
Gas planets typically rotate faster than Earth. For example, Jupiter rotates the quickest with a day length of about 10 hours, Saturn has a day length of about 10.7 hours, Uranus about 17 hours, and Neptune about 16 hours. In comparison, Earth rotates once every 24 hours.
Yes. The planet Jupiter rotates once in about 11 hours.
Here is a thought-experiment that can help answer the question:If the time required for you to run around the block increased,would that mean that you were running faster or slower ?If the time required to finish anything increases, it must be dueto the fact that the process is moving slower.
If the Earth were to rotate at a faster speed, the days would be shorter, leading to faster sunrises and sunsets. This could disrupt ecosystems, weather patterns, and the balance of day and night. Additionally, changes in rotation speed could affect the planet's shape and gravitational forces.
instead of everything getting older it would get younger
Nothing will happen because of the gravity
Venus and Mercury rotate slowly, much more slowly than Earth or Mars.
Yes, gas giants rotate faster on their axis compared to terrestrial planets like Earth. For example, Jupiter completes a rotation in about 10 hours, while Earth takes about 24 hours. This fast rotation is due to their massive size and faster spinning during their formation.
The season progression would reverse.
The apparent force of gravity on earth is not the same all over, the spin of the earth means that you weigh less at the equator than at the poles, due to the centripetal force from the earths spin. You will weigh about 0.3% less at the equator. If the earth spun faster still, this difference would be even more apparent.