Jupiter takes much longer than Mars to complete one orbit due to its greater distance from the Sun and its larger size. Being the largest planet in the solar system, Jupiter orbits at an average distance of about 778 million kilometers (484 million miles) from the Sun, compared to Mars, which is about 227 million kilometers (141 million miles) away. The increased distance means that Jupiter experiences a longer orbital path and takes more time to complete one revolution around the Sun. Additionally, according to Kepler's laws of planetary motion, planets that are farther from the Sun move more slowly in their orbits due to the weaker gravitational pull.
Jupiter has a longer year than Earth. It takes about 12 Earth years for Jupiter to complete one orbit around the sun.
Jupiter's longer year is due to its larger orbit around the Sun. The distance it needs to travel in its elliptical orbit is larger than Earth's, resulting in a longer orbital period. Jupiter takes about 12 Earth years to complete one orbit around the Sun.
Jupiter has 4332 days in a year because its orbit around the Sun is much larger compared to Earth's orbit. Jupiter's greater distance from the Sun means it takes longer for the planet to complete one orbit, resulting in a longer year on Jupiter compared to Earth.
Jupiter has a longer year than mercury because it takes longer for it to revolve around the sun.
Jupiter's year is longer than Earth's year because it is further away from the sun and takes more time to complete one orbit. Jupiter's distance from the sun means it has a larger orbit to travel around, which results in a longer year.
Jupiter has a longer year than Earth. It takes about 12 Earth years for Jupiter to complete one orbit around the sun.
Jupiter's longer year is due to its larger orbit around the Sun. The distance it needs to travel in its elliptical orbit is larger than Earth's, resulting in a longer orbital period. Jupiter takes about 12 Earth years to complete one orbit around the Sun.
Jupiter has 4332 days in a year because its orbit around the Sun is much larger compared to Earth's orbit. Jupiter's greater distance from the Sun means it takes longer for the planet to complete one orbit, resulting in a longer year on Jupiter compared to Earth.
Jupiter has a longer year than mercury because it takes longer for it to revolve around the sun.
Jupiter travels at 13.72 km/s, compared to Mar's orbital velocity of 24.13 km/s. Jupiter also has a longer distance to travel because it is further from the Sun. Therefore, Jupiter's orbit takes 4,330 days to Mars' 686 days. It all follows Kepler's 3rd law of planetary motion very nicely..
Jupiter's year is longer than Earth's year because it is further away from the sun and takes more time to complete one orbit. Jupiter's distance from the sun means it has a larger orbit to travel around, which results in a longer year.
Example: Jupiter travels at 13.72 km/s, compared to Mars' orbital velocity of 24.13 km/s. Jupiter also has a longer distance to travel because it is further from the Sun. Therefore, Jupiter's orbit takes 4,330 days to Mars' 686 days. It all follows Kepler's 3rd law of planetary motion very nicely. Notice that it has nothing to do with the planet's mass.
a year basically means how long it takes for a planet to make a complete orbit around its sun... the earth's is 364.25 days. Planets farther than ours e.g. mars, Jupiter etc. have longer orbit therefore take longer to complete an orbit around the sun, therefore a longer year :)
Well, basically different planets take longer to orbit the Sun. For example, Jupiter takes longer to orbit than earth, so Jupiter has a longer year. On Venus, a day lasts longer than a year as it takes longer to spin on its axis that to orbit the sun.
Jupiter does not orbit the earth. It takes 11.86 years for Jupiter to orbit the sun.
It takes Ganymede approximately 7 days to complete one orbit around Jupiter.
Jupiter's orbit is larger than Mercury's because Jupiter is farther away from the Sun and takes longer to complete one orbit. This is due to the gravitational pull of the Sun being weaker at Jupiter's distance, allowing it to move in a wider path. Mercury, being closer to the Sun, experiences a stronger gravitational pull and hence has a smaller orbit.