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This chain
reaction fuels the star for millions or billions of
years depending upon the amount of gases there
are. The star manages to avoid collapsing at this
point because of the equilibrium achieved by itself.
The gravitational pull from the core of the star is
equal to the gravitational pull of the gases forming
a type of orbit, however when this equality is
broken the star can go into several different
stages... displayed 300 characters
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Usually if the star is small in mass, most of
the gases will be consumed while some of it
escapes. This occurs because there is not a
tremendous gravitational pull upon those gases and
therefore the star weakens and becomes smaller.
It is then referred to as a White Dwarf. If the star
was to have a larger mass however, then it may
possibly Supernova, meaning that the nuclear
fusion within the star simply goes out of control
causing the star to explode... displayed next 300 characters
The gravitational pull from the core of the star is equal to the gravitational pull of the gases forming a type of orbit, however when this equality is broken the star can go into several different stages...
This occurs because there is not a tremendous gravitational pull upon those gases and therefore the star weakens and becomes smaller. It is then referred to as a White Dwarf...
The gravitational pull from the core of the star is equal to the gravitational pull of the gases forming a type of orbit, however when this equality is broken the star can go into several different stages...
This occurs because there is not a
tremendous gravitational pull on those gases and therefore the star
weakens and becomes smaller. It is then referred to as a White Dwarf...
The star manages to avoid
collapsing at this point because of the equilibrium achieved by itself. The
gravitational pull from the core of the star is equal to the gravitational pull
of the gases forming a type of orbit, however when this equality is broken the
star can go into several different stages...
The
gravitational pull from the core of the star is equal to the
gravitational pull of the gases forming a type of
orbit, however when this equality is broken the star can go
into several different stages...
The gravitational pull from the core of the star is equal to the gravitational pull of the gases, forming a type of orbit, but when this equality is broken...