Readers ask: If The Sun Was The Size Of A Basketball How Far Away Would The Earth Be?

If the Sun were the size of a basketball (about 23 cm in diameter), the Earth would be the size of a small bead, measuring slightly more than 2 mm in width. Because the usual distance between the Earth and the Sun is around 150 million kilometers, this bead would be approximately 25 meters distant from the basketball.

How big would the Earth be if Jupiter was the size of a basketball?

If the giant planet had been around 80 times as large as the sun, it would have evolved into a star rather than a planet. Jupiter’s enormous capacity might potentially accommodate more than 1,300 Earths. If Jupiter were the size of a basketball, Earth would be the size of a grape, and the reverse is true as well.

What if the Sun was the size of Earth?

If our globe were as vast as the Sun, then our soil would have to be stretched out to cover a much bigger area, similar to how water is spread out to cover a much larger area. This is because the Sun’s mass is so vast that its gravitational attraction pulls other planets into the Sun’s orbit, which is the reason why our Solar System moves the way it does currently.

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How big would the sun be if Earth was the size of a marble?

If the Earth had a diameter of one centimeter (marble size), the sun would have a diameter of 110 centimeters and be located 117 meters distant. Reducing the size of our Solar System to a level we can recognize while keeping it in scale is a fascinating exercise.

What would have happened if the sun were bigger than it is now?

When compared to the sun, which is whitish-yellow, bigger stars are hotter and bluer, while smaller stars are colder and redder. Life would be: Non-existent, at least in the way we currently understand it. According to the half-mass sun scenario, the habitable zone would migrate closer to the star, and our water would freeze solid if our planet orbited at the same distance from the star.

What would have happened if the sun were bigger?

It will grow to such an enormous size that it will consume Mercury, Venus, and even the Earth. When the sun reaches the status of a red giant, it will be large and puffy, and it will begin to expel its outer layers from the solar system. It will continue to shrink in size until it ultimately becomes what we refer to as a “white dwarf.”

What would happen if the sun were to shrink?

If the Sun were to become smaller than the Earth for whatever cause, this tiny Sun would be unable to generate fusion and would eventually burn out altogether, as explained above. Because the Sun is the source of gravity that holds us in orbit, all planets, including the Earth, would float out into space in search of a new source of gravitational attraction.

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What if the sun was a basketball?

If the Sun were the size of a basketball (about 23 cm in diameter), the Earth would be the size of a small bead, measuring slightly more than 2 mm in width. Because the usual distance between the Earth and the Sun is around 150 million kilometers, this bead would be approximately 25 meters distant from the basketball. This scale is based on the astronomical unit (AU), where 1 AU represents the distance between the Earth and the Sun.

What is the scale of the sun?

The average radius of the sun is 432,450 miles (696,000 kilometers), which corresponds to a diameter of around 864,938 miles (132,000 kilometers) (1.392 million km). You might arrange 109 Earths in a straight line over the face of the sun. The circumference of the sun is approximately 2,713,406 miles (4,366,813 km).

What is the size of the Earth?

The Solar System is approximately 36 billion times bigger in area than the Earth (3.6 X 1010 m2).

How big is Earth in space?

It is smaller than the four gas giants — Jupiter, Saturn, Uranus, and Neptune — but bigger than the three other rocky planets — Mercury, Mars, and Venus — because it has a lower radius. The Earth has a diameter of around 8,000 miles (13,000 kilometers) and is essentially spherical due to gravity’s tendency to draw stuff into a ball when it is at rest.

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