One planetary year.
A revolution is the period it takes for the planet to revolve one time around the sun. Its otherwise known as the planet's year.
The period of a planet's revolution is the time that it takes to complete one revolution around its axis of rotation relative to the background stars (also known as rotation period).
Mercury has the slowest revolution around the sun, taking about 88 Earth days to complete one orbit.
Both revolution and year involve change over time. Just as a year marks a complete cycle of the Earth around the sun, a revolution represents a significant and often abrupt change in a society or government.
The revolution of a planet refers to the entire elliptical "race-track" path that it travels around the sun. Within our solar system, the time for the planets to complete one full revolution ranges from 88 Earth-days to 248 Earth-years. The time it takes for one of the Earth's revolutions around the sun is 1 year.
A revolution is the period it takes for the planet to revolve one time around the sun. Its otherwise known as the planet's year.
revolution
Around its axis is a day. Around its orbit is a year.
Uranus.
One complete orbit of a planet around the sun is called a revolution.
Period of rotation
Mercury has the fastest revolution around the sun, taking around 88 Earth days to complete one orbit.
Venus
The period of a planet's revolution is the time that it takes to complete one revolution around its axis of rotation relative to the background stars (also known as rotation period).
Mercury has the slowest revolution around the sun, taking about 88 Earth days to complete one orbit.
a revolution, that is, the amount of time it takes the planet to complete its journey around the sun.
To find the number of revolution days of a planet, you can use the formula: revolution days = orbital period / rotation period. The orbital period is how long it takes for the planet to complete one orbit around the sun, while the rotation period is how long it takes for the planet to rotate on its axis. This formula will give you the number of days it takes for the planet to complete one full rotation around its axis.