The Earths Equatorial diameter is 12756 km, and there are (on average) 149,597,890 km to the sun, so we are talking about 11728 Earths.
Eris is in the Kuiper Belt (like Pluto) and is 96.6AU away. (1AU=93 Million Miles and is the average distance from the Earth to the Sun)
Your units are off. Earth's acceleration due to gravity is 9.8 m/s2 = 1g The Sun's acceleration due to gravity is 274m/s2 So you must divide: (274m/s2) / (9.8 m/s2)= 28 times as much gravity on the sun than on earth. Or... the sun's gravity is 28g where 1g is the pull on earth.
the sun is higher in summer because of the way the earth goes around the sun in winter we are abit closer then in summer but it does not have the same effect because off the angle off the earth
About 52 weeks, or one year.
The sun is the source of most of the energy on Earth. Oceans come second.
1,000,000,000 is how many times it could fit into the sun.
Roughly 390 times.
The earth can fit into the sun 1,304,000 times in volume.
The Sun has a radius 100 times that of the Earth which means that about 1,000,000 (1 million) Earths would fit into the Sun!
it is impossibe the sun is way bigger than the earth No Suns would fit into the Earth because The Sun is many thousands of times larger than the Earth.
The sun is over a million times bigger than the earth, and the earth is about 45 times bigger (by volume) than the moon. So you could not fit the sun into the moon.
i'd say 1,200,000
Earth could fit inside the sun roughly one million times.
1,000,000,000 is how many times it could fit into the sun.
Uranus can fit into the Sun approximately 63 times based on their volumes. The volume of the Sun is about 1.41 million times that of Earth, while Uranus has a volume roughly 63 times greater than that of Earth. This means that, in terms of sheer space, around 63 Uranians could theoretically fit inside the Sun.
In the region of 186 times
you can fit 1million planets the size of earth in the sun