Nuclear fusion.
Central part of the Sun where nuclear fusion occurs is called core.
The process responsible for the enormous energy in the Sun is nuclear fusion. In the core of the Sun, hydrogen atoms combine to form helium, releasing a tremendous amount of energy in the process. This energy is what powers the Sun and sustains life on Earth.
The primary source of the sun's energy is nuclear fusion. This process occurs in the sun's core, where hydrogen atoms combine to form helium, releasing vast amounts of energy in the form of light and heat.
The sun's nuclear fusion occurs in its core, where high temperatures and pressures allow hydrogen atoms to combine and form helium, releasing energy in the process. This energy is what fuels the sun and provides heat and light to our solar system.
The ultimate source of solar radiation is nuclear fusion that occurs in the core of the sun. This process releases energy in the form of electromagnetic radiation, which includes sunlight.
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.
Nuclear fusion takes place in the core of the Sun, where the extreme pressure and temperature cause hydrogen atoms to fuse into helium. This process releases energy in the form of heat and light, powering the Sun and providing heat and light to our solar system.
Nuclear fusion occurs in the sun's core, where hydrogen atoms combine to form helium, releasing a tremendous amount of energy in the process. This process is sustained by the sun's gravity and high temperature, providing the energy that powers the sun and sustains life on Earth.
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.
The Sun's core is mostly spherical in shape. It is where nuclear fusion occurs, producing energy in the form of light and heat.
The process is called nuclear fusion. In the sun's core, hydrogen atoms combine to form helium, releasing a tremendous amount of energy in the form of light and heat. This process continuously occurs, providing the sun with its energy.
It is made from the process of nuclear fusion in the core of the sun.