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Fusion is only possible with small nuclei because larger nuclei have stronger repulsive forces between their positively charged protons, making it harder for them to come together and fuse. Small nuclei have weaker repulsive forces, allowing them to overcome this barrier and fuse together to release energy.

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3mo ago

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How does the nuclear fusion creates new elements inside stars?

Small nuclei combine to form larger nuclei


What is the combining of two small nuclei to produce heat and one larger nuclei called?

Nuclear fusion is the process of combining two small nuclei to produce heat and one larger nucleus. This process releases a large amount of energy and is the same process that powers the sun and stars.


Small atomic nuclei are combined into larger ones known as?

Quarks- subatomic particles that make up nucleons


What are the process in which nuclei with small masses are combined to form a nucleus with a larger mass?

The process of combining nuclei with small masses to form a nucleus with a larger mass is called nuclear fusion. This occurs in stars where intense heat and pressure overcome the electrostatic repulsion between positively charged nuclei, allowing them to fuse together. This process releases a large amount of energy in the form of light and heat.


Which term is used to indicate the by which two small atomic nuclei merge to form a larger one?

nuclear fusion


Which term is used to indicate the process in which two small atomic nuclei emerge from a larger one?

nuclear fusion


What atomic process combines nuclei of small atoms to form massive nuclei?

FUSION


How do the products of a fusion reaction differ from the products of a fusion reaction?

Fusion is a process in which the nuclei of two atoms combine to form a larger nucleus, while fission during fusion a small fraction of the reactant mass is converted into energy. While not the only possible fusion reaction, the most commonly known is the fusion of hydrogen to create helium. The product is stable. In contrast, when fission of uranium or plutonium takes place, the resultant nuclei are neutron heavy and therefore will almost certainly be radioactive.


How do the products of a fusion differ from the products of fission reaction?

Fusion is a process in which the nuclei of two atoms combine to form a larger nucleus, while fission during fusion a small fraction of the reactant mass is converted into energy. While not the only possible fusion reaction, the most commonly known is the fusion of hydrogen to create helium. The product is stable. In contrast, when fission of uranium or plutonium takes place, the resultant nuclei are neutron heavy and therefore will almost certainly be radioactive.


What nuclear reaction happens when two small nuclei?

When two small nuclei combine to form a larger nucleus, it is known as nuclear fusion. This process releases a tremendous amount of energy, as predicted by Einstein's famous equation E=mc^2. Fusion reactions, such as those occurring in the Sun, have the potential to provide a nearly limitless source of clean energy.


How do products of a fusion reaction differ from the products of a fission reaction?

Fusion is a process in which the nuclei of two atoms combine to form a larger nucleus, while fission during fusion a small fraction of the reactant mass is converted into energy. While not the only possible fusion reaction, the most commonly known is the fusion of hydrogen to create helium. The product is stable. In contrast, when fission of uranium or plutonium takes place, the resultant nuclei are neutron heavy and therefore will almost certainly be radioactive.


How do the products of a fusion reaction different from the products of a fission reaction?

Fusion is a process in which the nuclei of two atoms combine to form a larger nucleus, while fission during fusion a small fraction of the reactant mass is converted into energy. While not the only possible fusion reaction, the most commonly known is the fusion of hydrogen to create helium. The product is stable. In contrast, when fission of uranium or plutonium takes place, the resultant nuclei are neutron heavy and therefore will almost certainly be radioactive.