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Characteristic details given: A.) equatorial diameter B.) period of rotation C.) number of moons D.) both A and C Answer : D.) both A and C
Characteristic details given: A.) equatorial diameter B.) period of rotation C.) number of moons D.) both A and C Answer : D.) both A and C
The equatorial rotation velocity of dwarf planet Pluto is approximately 56 feet per second.
No, there is not.
differential rotation and the underlying zonal flow
1.392 X 106 Km is the equatorial diameter. There is a slight 'flattening' of the polar diameter dues to the suns rotation.
rapid rotation. A.K.A penis jerkin.
Characteristic details given: A.) equatorial diameter B.) period of rotation C.) number of moons D.) both A and C Answer : D.) both A and C
Characteristic details given: A.) equatorial diameter B.) period of rotation C.) number of moons D.) both A and C Answer : D.) both A and C
The equatorial rotation velocity of dwarf planet Pluto is approximately 56 feet per second.
Mercury has a very slow spin or rotation about its axis. This means that it is much closer to a spherical shape rather than a flattened or squashed (oblate) sphere like those planets with a much faster rotational spin. This means that The pole to pole diameter is similar to the equatorial diameter. Mercury's diameter is 4879.4km (3031.9 miles).
Generally decreased.
The diameter of the Moon is 3,474 km. (Diameter of the Moon in miles: 2,159 miles) Since the Earth is not a perfect sphere, there are three numbers to know when answering questions about the diameter of Earth. The rotation of the planet has slightly flattened it out, so it has a larger diameter at the equator than at the poles. The equatorial diameter of Earth is 12,756 km, its polar diameter is 12,713 km, and its average diameter, which is referred to in common usage, is 12,742 km. For our friends who are not using the metric system, that translates to 7,926 miles.
No, there is not.
Triton is the largest of Neptune's 13 moons. It is unusual because it is the only large moon in our solar system that orbits in the opposite direction of its planet's rotation - a retrograde orbit
C = pi x diameter
differential rotation and the underlying zonal flow