A supernova.
After a star explodes in a supernova, it can leave behind various elements depending on its mass. Elements up to iron are formed during the star's life, while heavier elements like gold and uranium can be produced during the explosion. The remnants of the explosion can include elements like oxygen, carbon, silicon, and heavier elements depending on the stellar life cycle.
When the outer core of a star explodes after the core collapses, it produces a supernova. The explosion releases an immense amount of energy and can result in the creation and dispersal of heavy elements into space.
When stars explode, it can result in a powerful release of energy and various elements. The explosion may be in the form of a supernova, which can outshine entire galaxies for a short period. Supernovae play a crucial role in dispersing heavier elements into the universe and can leave behind dense remnants such as neutron stars or black holes.
Normally it is known as the supernova's progenitor star.
a supernova
supernova
A supernova.
The supernova remnant will either be a neutron star or a black hole.
A star that explodes is called a supernova.
Supernova
Supernova
Supernova
After a star explodes in a supernova, it can leave behind various elements depending on its mass. Elements up to iron are formed during the star's life, while heavier elements like gold and uranium can be produced during the explosion. The remnants of the explosion can include elements like oxygen, carbon, silicon, and heavier elements depending on the stellar life cycle.
When a star explodes, it releases an immense amount of energy, creating a supernova. This explosion can outshine an entire galaxy for a short period of time. Supernovae are crucial for the formation of heavy elements and can also cause the star to collapse and form a black hole or neutron star.
When the outer core of a star explodes after the core collapses, it produces a supernova. The explosion releases an immense amount of energy and can result in the creation and dispersal of heavy elements into space.
It's evidence for what you meant to say but didn't ... that the speed of light isindependent of frequency.