no its is the chemical reaction of two atoms when fused together
The process generating solar energy is one of nuclear fusion.
Auroras are caused by solar wind particles interacting with Earth's magnetic field, not solar flares directly. Solar flares can cause an increase in solar wind activity, which can lead to more intense auroras.
Auroras are not directly caused by solar flares. Auroras are created when charged particles from the sun, carried by solar wind, interact with the Earth's magnetic field and atmosphere. Solar flares can increase solar wind activity, which in turn can intensify auroras.
If you are asking where does solar nuclear fusion take place, then that would be at the core of stars.
Mars does not have solar flares in the same way that Earth does. Solar flares are caused by activity on the Sun, and Mars lacks a strong magnetic field to shield it from such events. However, Mars can still be affected by solar activity in other ways, such as through changes in its atmosphere.
The process generating solar energy is one of nuclear fusion.
Solar flares
Solar energy is formed by nuclear fusion in the sun
Auroras are caused by solar wind particles interacting with Earth's magnetic field, not solar flares directly. Solar flares can cause an increase in solar wind activity, which can lead to more intense auroras.
The core of the sun.
Auroras are not directly caused by solar flares. Auroras are created when charged particles from the sun, carried by solar wind, interact with the Earth's magnetic field and atmosphere. Solar flares can increase solar wind activity, which in turn can intensify auroras.
They seem independent to me - except that solar energy arises from nuclear fusion in the sun
Two types of solar features are sunspots and solar flares. Sunspots are dark spots on the Sun's surface caused by magnetic activity. Solar flares are sudden bursts of energy and radiation released from the Sun's atmosphere.
well...
Sun
Solar physics deals with the study of how the sun produces energy through nuclear fusion in its core, which results in the emission of light and heat. This field examines the processes and phenomena occurring within the sun that contribute to its energy production, such as solar flares, magnetic fields, and solar wind.
solar flares isfire