iron
The sun creates energy through nuclear fusion, where hydrogen atoms combine to form helium, releasing immense amounts of energy in the process. This process occurs in the sun's core, where temperatures and pressures are high enough to initiate fusion reactions.
Before a supernova occurs, a massive star undergoes fusion to produce iron in its core. As fusion progresses, the star creates heavier elements up to iron, which cannot release energy through fusion. When the core becomes predominantly iron, it can no longer support the star against gravitational collapse, leading to a supernova explosion.
Carbon is synthesized from the nuclear fusion that occurs inside stars. The mass of a large or massive star creates conditions that allows more fusion to occur than just hydrogen to helium.
Fusion occurs in the sun.
Fusion occurs in the sun.
Central part of the Sun where nuclear fusion occurs is called core.
Fusion occurs in the core of the Sun
Nuclear fusion, in the star's core.Nuclear fusion, in the star's core.Nuclear fusion, in the star's core.Nuclear fusion, in the star's core.
It requires almost as much energy to create nuclear fusion as the energy it creates. :)
The inter fusion of two helium atoms creates a hydrogen atom. This is an example using inter fusion.
Nuclear fusion occurs in the solar core.
Nuclear fusion in the sun's core occurs when hydrogen atoms combine to form helium under high pressure and temperature, releasing energy in the process. This process is sustained by the sun's immense gravitational force, which creates the necessary conditions for fusion to occur.