None. The Sun's core is somewhere around 15 million Kelvin; the Sun's Corona can get quite hot - perhaps a million Kelvin, despite the fact that the lower layers are much cooler. But I don't think any part of the Sun reaches 100 million Kelvin.
None. The Sun's core is somewhere around 15 million Kelvin; the Sun's Corona can get quite hot - perhaps a million Kelvin, despite the fact that the lower layers are much cooler. But I don't think any part of the Sun reaches 100 million Kelvin.
None. The Sun's core is somewhere around 15 million Kelvin; the Sun's Corona can get quite hot - perhaps a million Kelvin, despite the fact that the lower layers are much cooler. But I don't think any part of the Sun reaches 100 million Kelvin.
None. The Sun's core is somewhere around 15 million Kelvin; the Sun's Corona can get quite hot - perhaps a million Kelvin, despite the fact that the lower layers are much cooler. But I don't think any part of the Sun reaches 100 million Kelvin.
Energy generated in the sun's core through nuclear fusion can take up to a million years to travel to the surface and be released as sunlight. Once released, it takes about 8 minutes for the sunlight to travel the 93 million miles to reach Earth.
Yes, plasma can be hotter than the surface of the sun. While the surface of the sun has temperatures around 5,500°C (9,932°F), plasma in fusion reactors can reach temperatures as high as 100 million degrees Celsius (180 million degrees Fahrenheit).
OK, Saturn is about 1,430,000,000 km from the sun. There are 1000 m in a km, and 100 cm in a m. 1,430,000,000*1000*100= 143000000000000 cm from the sun.
369 000 100 decktomiles estimated. SUN <----------------------------> MERCURY 369 000 100 decktomiles (estimated)
It takes approx. 8 and half minutes to reach earth
The core of the sun reaches temperatures of around 15 million K, while the outer atmosphere or corona can reach temperatures exceeding 1 million K. Temperatures of 100 million K are not typically found in the sun's natural layers.
The Sun doesn't reach Earth's surface; the Sun stays right where it is, in the center of our Solar System.The Sun's light takes about 8 minutes to reach Earth (150 million km. / 300,000 km/second).The Sun doesn't reach Earth's surface; the Sun stays right where it is, in the center of our Solar System.The Sun's light takes about 8 minutes to reach Earth (150 million km. / 300,000 km/second).The Sun doesn't reach Earth's surface; the Sun stays right where it is, in the center of our Solar System.The Sun's light takes about 8 minutes to reach Earth (150 million km. / 300,000 km/second).The Sun doesn't reach Earth's surface; the Sun stays right where it is, in the center of our Solar System.The Sun's light takes about 8 minutes to reach Earth (150 million km. / 300,000 km/second).
The sun is 93 million miles away from the earth.
The light from our Sun will take about 2.5 million years to reach the Andromeda Galaxy.
It takes around 2.5 million years for light from the Sun to reach the Andromeda galaxy, which is approximately 2.537 million light-years away from Earth.
2 million days
The corona is the region of the sun from the surface to about 1 million kilometers into space. Temperatures in the corona can reach as high as two million degree Fahrenheit.
Energy generated in the sun's core through nuclear fusion can take up to a million years to travel to the surface and be released as sunlight. Once released, it takes about 8 minutes for the sunlight to travel the 93 million miles to reach Earth.
the earth does not go to the sun or else we would all be burnt to ashes. it takes about 8 minutes for the light from the sun to reach the earth.
Yes, plasma can be hotter than the surface of the sun. While the surface of the sun has temperatures around 5,500°C (9,932°F), plasma in fusion reactors can reach temperatures as high as 100 million degrees Celsius (180 million degrees Fahrenheit).
The temperature of the sun's corona can reach over a million degrees Fahrenheit.
It takes about 10 million years for a star like our sun to form and reach its stable state.