Mark Oliphant in 1932
Some bodies in space that emit light include stars, galaxies, and active galactic nuclei. Stars emit light through nuclear fusion in their cores, while galaxies and active galactic nuclei emit light from the energy produced by supermassive black holes at their centers.
The sun creates energy through nuclear fusion, where hydrogen atoms fuse together in its core to form helium. This process releases a tremendous amount of energy in the form of light and heat. It happens in the sun's core, where temperatures and pressures are extreme enough to facilitate nuclear fusion.
..particles (nuclei) fuse together to form heavier nuclei. Initially, two protons fuse together (hydrogen atom nuclei) to form deuterium. These in turn may fuse with further protons, or with another deuterium nuclei to for a helium nuclei. As the heavier nuclei form, lots of energy is released.
The sun's energy is released when nuclear fusion converts hydrogen atoms into energy. This process involves the fusion of hydrogen nuclei to form helium nuclei, releasing large amounts of energy in the form of light and heat.
The thermonuclear reactions in the Sun occur in its core, where hydrogen nuclei fuse to form helium nuclei. This process releases energy in the form of light and heat, which powers the Sun and sustains life on Earth. The most common reaction is the proton-proton chain reaction, where hydrogen nuclei collide to form helium-4 nuclei.
The combination of two light atomic nuclei to form a heavier nucleus is called fusion.
The fusion of hydrogen nuclei in the sun produces helium, along with energy in the form of light and heat. This process is known as nuclear fusion and is the source of the sun's energy.
The combining of light nuclei is called nuclear fusion. It is the process by which two light atomic nuclei combine to form a heavier nucleus, releasing a large amount of energy in the process. This reaction is the principle behind the energy production in the sun and other stars.
Fusion and fission are two types of nuclear reactions that release energy. Fusion involves combining two light atomic nuclei to form a heavier nucleus, while fission involves splitting a heavy atomic nucleus into lighter nuclei. The main difference is the process by which energy is released: fusion releases energy when light nuclei combine, while fission releases energy when heavy nuclei split.
The process is called nuclear fusion. It occurs in the core of the Sun where hydrogen nuclei combine to form helium nuclei, releasing a large amount of energy in the form of light and heat. This energy sustains the Sun's brightness and warmth.
its fusion
Fusion releases more energy than fission. Fusion is the process of combining light atomic nuclei to form a heavier nucleus, while fission is the process of splitting a heavy nucleus into lighter nuclei. Fusion reactions release more energy because they involve combining lighter nuclei to form more stable nuclei, releasing large amounts of energy in the process.
Fusion is a nuclear process where two light atomic nuclei combine to form a heavier nucleus, releasing a large amount of energy in the process. In the sun, the primary fusion process is the combination of hydrogen nuclei to form helium, releasing energy in the form of light and heat. This continuous fusion reaction fuels the sun's brightness and heat output.
Good question. A fusion bomb combines (fuses) light nuclei (hydrogen) into larger nuclei to get its energy. But it needs a fission bomb to start it. A fission bomb breaks up (fissions) heavy nuclei (uranium/plutonium) into smaller nuclei to get its energy.
Nuclear fusion is the joining of two or more nuclei into one nucleus (apex) CORRECT ANSWER!!!!!!
Nuclear fission is the splitting of a heavy nucleus into smaller nuclei, releasing energy. Nuclear fusion is the combining of light nuclei to form a heavier nucleus, also releasing energy.
The process of binding together two light nuclei to form a heavier one is called nuclear fusion. This process releases a large amount of energy and is the same reaction that powers the sun and other stars.