FIND OUT WHY MOON IN RUSTING EVEN WITHOUT AIR AND WATER

The moon is our closest neighbour in space and other experiments have been done in the past to see the possibility of human life on the moon. Today scientists on the same moon are seeing traces of oxidized iron. Yes ! There is junk on the moon and it is becoming a problem for us to think about. This mineral quantity on the Earth has been found recently on the moon. The surprising thing is that the origin of oxidized iron on the moon is impossible because it requires a lot of air and water. The wind on the moon is very little. While here, evidence of the presence of water ice (ice made from water) has been found, but still there is no possible oxidation moisture on the moon.

According to the well-known University of Hawaii, the presence of hematite on the surface of the moon is being confirmed by looking at the pictures taken by the Indian Chandrayaan-1. Planetary science expert at the same university, Shuai Li, says that the presence of hematite on the moon seems impossible because the moon is constantly close to the sun and withstands solar winds emanating from the sun, and it simultaneously receives hydrogen. Electrons are essential for oxidation. It has also been seen that the part of the moon which is near to the earth has more iron and this is surprising for the scientists.

In view of these changes, scientists are concluding one main reason.

Excessive amounts of hematite have been found on the moon, where heavy snow has been found earlier. It is believed that the ice has melted and hit the surface due to the meteor collision. It has been observed by scientists that the oxygen present in our atmosphere reaches the moon with the winds coming out of the sun. Oxidation can occur in the presence of this oxygen. When the Earth comes between the Moon and the Sun, the Moon gets heavy amount of hydrogen being brought by the solar winds and at this time, because the right amount of electrons and oxygen is present on the surface of the moon, iron oxidation occurs.

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