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In the core of a star, hydrogen is primarily fused into helium through the process of nuclear fusion. This fusion releases a tremendous amount of energy, which powers the star and generates heat and light. As the star evolves and exhausts its hydrogen fuel, it may begin fusing heavier elements, such as helium into carbon, in later stages of its lifecycle.

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What is final core element for a solar like star?

The final elements fused in a star of the mass of our Sun are Oxygen then Carbon. Therefore a white dwarf core could be regarded as a solid, gigantic diamond.


The final core element for a massive star is?

The final core element for a massive star is iron. When a massive star exhausts its nuclear fuel, iron builds up in its core due to fusion reactions. Iron cannot undergo further fusion to release energy, leading to a collapse and subsequent supernova explosion.


Where does hydrogen fusion occur when there is no hydrogen left in the core of a star?

If there is no hydrogen left at the core of star then hydrogen fusion cannot occur. What happens in the core of a star before that happens is that helium begins to fuse, and then the other elements going up the periodic table until carbon. And then if the star explodes into a supernova, traces of the higher elements are fused as well.


What chemical is more abundant the older a star is?

As a star ages, it fuses hydrogen into helium in its core. Therefore, helium becomes more abundant in older stars compared to younger stars.


What exactly is helium ash?

Helium ash is merely helium. Helium is commonly referred to as ash in discussions of our sun's fuel (and others stars of similar size/composition) to indicate that it cannot burn (or really cannot be fused into a larger atomic element). Our sun fuses hydrogen into helium at its core but the temperatures and pressures are not high enough to fuse helium, so it is called ash. If the core had a higher temperature/pressure, the helium would be fused into a larger element (carbon), something that happens with more massive stars. In such a star it would not be called ash because the conditions would be such that it could be fused ("burned"), so it would merely be called helium.

Related Questions

What is final core element for a solar like star?

The final elements fused in a star of the mass of our Sun are Oxygen then Carbon. Therefore a white dwarf core could be regarded as a solid, gigantic diamond.


What element is transformed in nuclear fusion in the sun's core?

We understand that hydrogen atoms are fused into helium in the sun's core.


How is nuclear fusion in a main-sequence star is different from nuclear fusion in a giant star.?

Nuclear Fusion in a Giant Star involves Helium being fused into a hydrogen shell that surrounds the core, and Nuclear Fusion in a Main-Sequence star involves Hydrogen being fused into Helium to produce Energy inside of the core.


How nuclear fusion in a main sequence is different from nuclear fusion in a giant star?

Nuclear Fusion in a Giant Star involves Helium being fused into a hydrogen shell that surrounds the core, and Nuclear Fusion in a Main-Sequence star involves Hydrogen being fused into Helium to produce Energy inside of the core.


What is sun the star's core made of?

the core of the sun is a seething nuclear furnace where millions of tons of hydrogen are being fused in to helium every second.


What element is the main fuel for a red giant star?

The main fuel for a red giant star is hydrogen, which is fused into helium in the star's core during the earlier stages of its life. As the hydrogen in the core gets depleted, the star begins to fuse helium and other heavier elements in shells surrounding the core. This process causes the star to expand and cool, giving it the characteristic red color. Eventually, red giants may go on to fuse heavier elements as they evolve further.


Will naruto ever fused another element with the rasengan?

The only element he has an affinity for is wind, which he has fused with the rasengan.


Why does a star's hydrogen supply run out?

A star's hydrogen supply runs out because of nuclear fusion in its core. As hydrogen is fused into heavier elements like helium, the star's core temperature increases, causing it to expand and cool. Eventually, the core runs out of hydrogen to fuse, leading to the star's evolution into a different phase.


What occurs when fusion creates iron in the core of a star?

The star "burns out" because iron cannot be fused. What happens then depends on the star's remaining mass:low - white dwarfmed. - neutron starhigh - black hole


The final core element for a massive star is?

The final core element for a massive star is iron. When a massive star exhausts its nuclear fuel, iron builds up in its core due to fusion reactions. Iron cannot undergo further fusion to release energy, leading to a collapse and subsequent supernova explosion.


What is the heviest element that can be made in stars center?

While it is still a star? Iron. Everything heavier must be fused from lighter elements in a supernova explosion, which blows the star apart.


What is the first element that is converted in a star's core?

The first element that is converted in a star's core is hydrogen. Through nuclear fusion, hydrogen atoms fuse together to form helium, releasing energy in the process. This fusion process is what powers a star and allows it to shine.