Because the nuclei are all positively charged they repel each other. They are made to stick to each other when brought close enough for the strong force to take hold.
bringing them back together
Nuclear fusion reactions require extremely high temperatures, typically in the range of 100 million to 150 million degrees Celsius, in order to overcome the electrostatic repulsion between positively charged atomic nuclei and allow them to fuse together. This extreme heat is needed to create the conditions necessary for the fusion process to occur and release energy.
Arbitration works by bringing three parties together, the two parties that require arbitration and a third neutral party. The neutral party works together with the other parties to try to come to an amicable agreement.
Elements with relatively small nuclear binding energy per nuclear particle include elements with high atomic number (e.g. transuranium elements) and elements with unstable isotopes. These elements require more energy to hold their nucleus together, resulting in smaller binding energy per nuclear particle.
Nuclear fission
No. Nuclear Power does not require sunlight. Nuclear Fission (Nuclear power) is the splitting of an atomic nucleus, when the nucleus splits into its component parts it realeses a huge amount of energy. Disambiguation: Nuclear Fusion is what occurs in stars. It is when two or more atomic nuclei fuse and form a single heavier nucleus. This is usually accompanied by the release of massive amounts of energy.
No, the word 'together' does not require a hyphen
Its not extremely difficult but it does require alot of preparation
Nuclear. The rest are mechanical.
No, proteins with a nuclear localization signal require energy to actively transport through the nuclear pore complex into the nucleus. They are not able to enter the nucleus passively. The binding and translocation through the nuclear pore are facilitated by specific transport receptors and require energy in the form of GTP hydrolysis.
uranium, plutonium,etc etc
Gold can be made by combining other metals in a nuclear reaction called nucleosynthesis that occurs in the cores of stars during supernova explosions. Another method is through nuclear transmutation, where heavier elements are bombarded with high-energy particles to form gold isotopes. These processes require extremely high temperatures and pressures not achievable through conventional means.