Yes, they are quite different. The deuterium-tritium reaction produces a helium nucleus, which is harmless. There will be an intense neutron bombardment of the enclosure holding the fusion plasma, and this will result in the structure becoming radioactive, but that will be a problem for decommissioning rather than operation.
Scientists originally promised fusion as a clean source of energy, and whilst it is not entirely so, it is far cleaner than fission. The only problem is finding how to make it work in a practical power producing plant.
Nuclear fusion doesn't produce energy.
I currently use nuclear fusion.
Nuclear fission typically produces more radioactive by-products compared to nuclear fusion. This is because fission involves the splitting of large atoms into smaller, unstable fragments which can emit radiation. Fusion, on the other hand, involves the combining of light atoms to form a heavier nucleus with less unstable by-products.
The nuclear fission and/or fusion results in loss of mass (or mass defect) that transforms into energy according to formula E = mc2 (c is light velocity). The resulting energy manifests itself as heat energy that produces steam. The steam spins the turbines that spins electric generators and hence producing electricity.
The two processes that produce nuclear changes are nuclear fusion and nuclear fission. Nuclear fusion involves combining two atomic nuclei to form a heavier nucleus, while nuclear fission involves splitting a heavy nucleus into smaller ones. Both processes release a large amount of energy.
Nuclear fusion doesn't produce energy.
Energy from nuclear fusion is around 400 times more than that of nuclear fission for same mass.
Lack (or reduced) fission products. Fission products emit most of the harmful radiation in fallout.
I currently use nuclear fusion.
Definition: energy from nuclear fission or fusion: the energy released by nuclear fission or fusion
Nuclear fission involves splitting atoms to release energy, while nuclear fusion involves combining atoms to release energy. In terms of energy production, nuclear fusion has the potential to produce more energy than fission, but it is currently more difficult to control and sustain.
Nuclear fusion
The antonym of nuclear fusion is nuclear fission. Nuclear fusion is the process of combining atomic nuclei to form a heavier nucleus, while nuclear fission is the process of splitting a heavy atomic nucleus into smaller nuclei.
Nuclear fission typically produces more radioactive by-products compared to nuclear fusion. This is because fission involves the splitting of large atoms into smaller, unstable fragments which can emit radiation. Fusion, on the other hand, involves the combining of light atoms to form a heavier nucleus with less unstable by-products.
No Strontium is produced by nuclear fission not fusion.
nuclear fission and nuclear fusion
The nuclear fission and/or fusion results in loss of mass (or mass defect) that transforms into energy according to formula E = mc2 (c is light velocity). The resulting energy manifests itself as heat energy that produces steam. The steam spins the turbines that spins electric generators and hence producing electricity.