The greatest difference in seasons will occur on a planet that has a circular orbit. This is because winds are created this way.
No planet has a perfectly circular orbit, though Venus has the least orbital eccentricity of any planet in our solar system.
An eliptical orbit. In theory a planet could also have a circular orbit, but no planet that we know of has a perfectly circular orbit, although some have a nearly circular orbit.
Earth and Mars are the two planets in our solar system that have seasons. These seasons are caused by the tilt of the planets' axes, which affects the amount of sunlight reaching different parts of the planet at different times of the year.
Mars
none of the planets have seasons except mars and the earth.
No planet has a perfectly circular orbit, though Venus has the least orbital eccentricity of any planet in our solar system.
That's a good question. Seasons are usually caused by a planet's axial tilt. As the planet goes round the Sun, the tilt affects the heat received at a particular place on the planet. But the tilt of Mercury's axis is almost zero. So it doesn't have normal seasons. However there are still variations in the climate because Mercury's orbit is a long way from being circular. There's a big difference between when it's nearest the Sun and when it's furthest away from the Sun.
its axis of rotation inclined 45 degrees to the plane of its orbit around the sun
no most planets have seasons
our planet changes by the seasons and the weather
Uranus and Pluto have a tilt and have extreme seasons. Mars, Saturn, and Neptune have seasons that are similar to ours.
Mars has four distinct seasons, and may well be the planet in our Solar System having seasons the closest in general to ours.
No, in fact there are not seasons on mars at all. Because mars is a planet with no life on it, there are no seasons!!
The planet that has the greatest gravitational force is Jupiter.
Mercury.
An eliptical orbit. In theory a planet could also have a circular orbit, but no planet that we know of has a perfectly circular orbit, although some have a nearly circular orbit.
Mars