SOLAR SYSTEM

UNIVERSE

SPACE EXPLORATION

Question [CLICK ON ANY CHOICE TO KNOW THE RIGHT ANSWER]
The region between the inner and outer planets where most asteroids orbit around the sun.
A
meteorites
B
meteroid
C
asteroid belt
D
comet
Explanation: 

Detailed explanation-1: -Main Asteroid Belt: The majority of known asteroids orbit within the asteroid belt between Mars and Jupiter, generally with not very elongated orbits.

Detailed explanation-2: -The name of the asteroid belt is the asteroid belt, although sometimes it is called the inner asteroid belt, the main asteroid belt, or simply the main belt. The name of the asteroid belt is more of a description of what it is, rather than a proper name, like the ones given to the Kuiper belt or the Oort cloud.

Detailed explanation-3: -The asteroid belt (sometimes referred to as the main asteroid belt) orbits between Mars and Jupiter. It consists of asteroids and minor planets forming a disk around the sun. It also serves as a sort of dividing line between the inner rocky planets and outer gas giants.

Detailed explanation-4: -Most of this ancient space rubble can be found orbiting the Sun between Mars and Jupiter within the main asteroid belt. Asteroids range in size from Vesta – the largest at about 329 miles (530 kilometers) in diameter – to bodies that are less than 33 feet (10 meters) across.

Detailed explanation-5: -The main asteroid belt lies between Mars and Jupiter, and Trojan asteroids both lead and follow Jupiter. Scientists now know that asteroids were the original “building blocks” of the inner planets.

Detailed explanation-6: -The asteroid belt is located between the inner and the outer planets and is home to thousands of rocks and debris known as asteroids and some of the dwarf planets. All of these orbit the Sun.

Detailed explanation-7: -Many asteroids orbit the Sun in a region between Mars and Jupiter. This “belt” of asteroids follows a slightly elliptical path as it orbits the Sun in the same direction as the planets. It takes anywhere from three to six Earth years for a complete revolution around the Sun.

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