It all depends on mass. If its over the point of where a neutron star can form then it forms a black hole. If its below it then it'll form a neutron star.
When a supernova becomes massive enough, it's own gravitational pull will pull it together, and it becomes a neutron star. A neutron is when the electrons in the atoms get pushed against the nucleus because the gravitational pull is so strong. A neutron star becomes a black hole when the individual particles (the electrons, neutrons, and protons) collapse into themselves.
One factor affecting the kinetic energy of a particle (or body) in is the viscosity of the medium through which that particle moves
size/ polarity can be the factors
the concentration of hydrogen ions - H+
That is decided by the vertebral column. Vertebrates have a vertebral column.
Mass decides a stars ultimate fate.
The most important factor in determining a star's life cycle is its mass. The mass of a star determines its size, temperature, and how it will evolve over time. More massive stars have shorter lives and end in a violent supernova explosion, while less massive stars like the Sun will eventually become a white dwarf.
The key factor that determines the soundness of an argument is the truth of its premises.
The primary factor that determines the velocity of a wave is the medium through which the wave is traveling.
When a supernova becomes massive enough, it's own gravitational pull will pull it together, and it becomes a neutron star. A neutron is when the electrons in the atoms get pushed against the nucleus because the gravitational pull is so strong. A neutron star becomes a black hole when the individual particles (the electrons, neutrons, and protons) collapse into themselves.
Champagne Supernova.
The length of the vessel determines what equipment is required.
The mass of the star is the main factor that determines its fate when it dies. Stars with more mass will undergo more violent and spectacular deaths, such as exploding as supernovae or collapsing into black holes. Less massive stars may end their lives more quietly as white dwarfs or neutron stars.
Yes by a large factor. A supernova can be 10 light years across. Our Sun is a mere 4.6 light seconds across
MASS
vibration
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