The gas giants in our solar system—Jupiter, Saturn, Uranus, and Neptune—exhibit significant differences between their periods of rotation and revolution. Generally, gas giants have short rotation periods; for example, Jupiter completes a rotation in about 10 hours, while their revolution periods around the Sun are much longer, with Jupiter taking about 12 Earth years. This disparity is due to their large distances from the Sun and the gravitational forces involved, resulting in slower orbital speeds compared to their rapid spins. Thus, while they rotate quickly, their orbits take much longer to complete.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
All planets in our solar system vary in the time it takes them to complete a revolution. This is due to their differing distances from the sun. As far as rotation goes, the time varies from nine hours and fifty minutes for Jupiter to 244 days for Venus to make a like rotation.
Earth's precession is the slow wobble of its axis over a period of about 26,000 years, causing a shift in the orientation of the Earth towards the North Star. This is different from Earth's rotation, which is the spinning of the Earth on its axis once every 24 hours, causing day and night. Rotation affects the length of a day, while precession affects the position of Earth's axis in the sky over long periods of time.
Their farther awat from the sun
The gas giants in our solar system—Jupiter, Saturn, Uranus, and Neptune—exhibit significant differences between their periods of rotation and revolution. Generally, gas giants have short rotation periods; for example, Jupiter completes a rotation in about 10 hours, while their revolution periods around the Sun are much longer, with Jupiter taking about 12 Earth years. This disparity is due to their large distances from the Sun and the gravitational forces involved, resulting in slower orbital speeds compared to their rapid spins. Thus, while they rotate quickly, their orbits take much longer to complete.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
Rotation is spinning on an object's axis. Revolution is orbiting around an external axis.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.
It is so much greater because the planets are made out of gas and gas are inside a wind storm or should i say a wind cycle and that is my answer.