First deuterium and tritium (hydrogen isotopes) are put in. Next they are compressed using many super electromagnets, producing heat, that fuses them together, making radioactive helium. Then the extra proton fall off, making stable helium.
Hydrogen undergoes nuclear fusion to form helium at a temperature of 107 K
The next nuclear fusion cycle after helium fusion in a massive star is carbon fusion. This process involves fusing helium nuclei to form carbon. Carbon fusion typically occurs in the core of a massive star after helium fusion is completed.
The core of the protostar reached an extremely high temperature
Nuclear fusion doesn't produce energy.
I currently use nuclear fusion.
Hydrogen undergoes nuclear fusion to form helium at a temperature of 107 K
The next nuclear fusion cycle after helium fusion in a massive star is carbon fusion. This process involves fusing helium nuclei to form carbon. Carbon fusion typically occurs in the core of a massive star after helium fusion is completed.
Nuclear Fusion
The core of the protostar reached an extremely high temperature
Fusion is a nuclear reaction.
Nuclear fusion produces nuclear energy
Nuclear fusion
Nuclear fusion doesn't produce energy.
In nuclear fusion mass transforms into energy.
No Strontium is produced by nuclear fission not fusion.
Americium was not tested to produce nuclear fusion.
Yes, the sun is a nuclear fusion reactor.