Hindi ko alam I'm not that kind na matalino
The primary atomic reaction that occurs on the sun is nuclear fusion, specifically the fusion of hydrogen atoms to form helium. This process releases a large amount of energy in the form of light and heat.
In stars, the primary nuclear reaction is nuclear fusion, where lighter atomic nuclei combine to form heavier nuclei, releasing vast amounts of energy. The most common fusion process in stars like the Sun is the conversion of hydrogen into helium through a series of reactions known as the proton-proton chain. This reaction releases energy in the form of light and heat, which powers the star and contributes to the processes that sustain life on Earth. In more massive stars, other fusion processes can occur, including the fusion of helium into heavier elements.
In a star, nuclear fusion reactions occur. These reactions involve the conversion of hydrogen into helium, releasing immense amounts of energy in the process. This energy is what powers the star and allows it to shine.
All stars fuse hydrogen into helium - the slight difference in atomic weight between 4 hydrogen atoms and one helium atom, is given off as radiation.
Both energy (sunlight) and helium are produced when hydrogen fuses together. This also what happened when the US used atomic weapons on Japan in WW2.
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A fusion reaction.
Nuclear Fusion
This is called a fusion reaction.
The primary atomic reaction that occurs on the sun is nuclear fusion, specifically the fusion of hydrogen atoms to form helium. This process releases a large amount of energy in the form of light and heat.
Its called as nuclear fusion. The nucleus of hydrogen atoms fuse together and form helium nucleus. There is some difference of the two masses resulting it to become energy by Einstein's formulae e=mc^2
When hydrogen is liberated from a compound in a chemical reaction it invariably forms molecular hydrogen, H2, rather than atomic hydrogen.
nascent hydrogen is much more reactive than ordinary hydrogen because it is produced in situ,itmeans that as it is produced it is consumed in another reaction. It is unstable that is why much more reactive than atomic hydrogen.
nascent hydrogen is much more reactive than ordinary hydrogen because it is produced in situ,itmeans that as it is produced it is consumed in another reaction. It is unstable that is why much more reactive than atomic hydrogen.
An Atomic bomb is the detonator for a Hydrogen bomb to create enough heat for the fission - fusion chain reaction.
The hydrogen bomb uses nuclear fusion, a reaction in which two light atomic nuclei combine to form a heavier nucleus, releasing a large amount of energy. This differs from nuclear fission, which is the process used in atomic bombs where heavy atomic nuclei are split into lighter ones.
Cleavage of hydrogen is a chemical reaction in which the diatomic molecules that are the stable form of hydrogen at standard temperature and pressure separate into their individual atomic components: H2 -> 2 H.