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Revision notes with simplified explanations to understand The Life Cycle of Solar Mass Stars quickly and effectively.
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Stars go through several stages in their lifecycle, starting from clouds of dust and gas in a galaxy. Here are the main stages of a star's life:
Eventually, the star exhausts its hydrogen fuel. Without fusion to produce outward pressure, the star becomes unstable and begins to collapse under its own gravity.
The next stages of the star's life depend on its initial mass: For Massive Stars:
The core collapse increases the temperature and pressure to levels where heavier elements can fuse.
After the fusion of heavier elements, the star becomes too massive to maintain stability and undergoes a dramatic collapse.
This collapse causes the star to explode in a supernova, a massive explosion that expels the outer layers of the star into space.
The core that remains after the supernova may form a neutron star (extremely dense core) or, if massive enough, collapse further into a black hole. For Medium-sized Stars (like the Sun):
As the hydrogen runs out, the star begins to fuse helium and other elements in its core, but less vigorously compared to massive stars.
The outer layers are expelled gently, forming a planetary nebula—a shell of gas that surrounds the remaining core.
The remaining core cools and contracts into a white dwarf, a small, dense, and slowly cooling remnant.
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