It's called the proton-proton cycle. It's the source of the sun's energy. Also called nuclear fusion.
Nuclear fusion in sun is followed by proton proton chain reaction during this reaction hydrogen fused to form helium the main products of this reaction according to nuclear equation is - positron, neutrino, gamma ray photons, isotopes of hydrogen and helium
The reactants are Hydrogen atoms and products are Helium atoms. Because Helium atoms are larger than Hydrogen atom, large amount of energy is released from the net binding energy that resulted during the fusion process.
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
Hydrogen fusion occurs in stars to create helium. This process, known as nuclear fusion, involves the fusion of hydrogen nuclei to form helium nuclei, releasing large amounts of energy in the process.
Nuclear fusion, in which hydrogen-1 is fused into helium-4.
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.
hydrogen fusion
hydrogen combine to form helium by nuclear fusion reaction
It is the fusion of hydrogen nuclei (protons) to form helium
fusion reaction of helium and hydrogen
It's called the proton-proton cycle. It's the source of the sun's energy. Also called nuclear fusion.
No. In a fusion reaction, a heavier element is made of a lighter pair by "gluing" them together in a fusion reaction. When we split an atom, that's called atom splitting, or sometimes fission, not fusion. They are opposites. Stars give off light, but the primary fuel in their fusion engines is hydrogen, which they convert into helium. As the hydrogen burns out, the star begins making helium into carbon.
The primary gas produced by nuclear fusion is helium. In the Sun, hydrogen nuclei fuse to form helium nuclei, releasing large amounts of energy in the process. Helium is a byproduct of this fusion reaction.
Hydrogen-2 (deuterium) and hydrogen-3 (tritium) nuclei can undergo fusion to form helium-4, releasing a neutron in the process. This fusion reaction is the basis for fusion energy production in potential future reactor designs.
Fusion
Nuclear fusion in sun is followed by proton proton chain reaction during this reaction hydrogen fused to form helium the main products of this reaction according to nuclear equation is - positron, neutrino, gamma ray photons, isotopes of hydrogen and helium