The Bizarre ‘vampire’ Try To Escape The Galaxy To Contain The Earth

It is the best way we are about 2,000 light years, rushing at a speed of 2 million miles / hour (equivalent to 3.2 million km / hour), will quickly escape the insecurity of the galaxy containing the earth. Strangely determined that the LP 40-365 star is located about 2,000 light years away from us, rushing at a speed of 2 million miles per hour (equivalent to 3.2 million km / hour) towards the left edge of the galaxy Land. According to Associate Professor JJ Hermes from Boston University of Science and Arts, this star is actually a leftover after a giant white dwarf explosion

. "This star moves as sure It will leave the galaxy ". To "escape" from the big Milky Way galaxy and have a strong gravity, that star has received an unimaginable shot from the star explosion. White dwarf is what remains of one Large star like our sun
Scientists believe that LP 40-365 stars are the result of a white dwarf couple "devouring" each other. Last life, the star flared into a red giant star, then gradually shrink into dwarfs White because of running energy. But this small core still carries a strange power, enough material attraction very strong from any unfortunate aura. One in 2 is a white dwarf, acting as a "vampire" suck Material from companion, has been discovered. But it is also possible that the two sides are white dwarfs, stronger guys will make vampires. But whatever the result, this material suction will make both exploding. Such a blast gave birth to LP 40-365. White dwarfs are celestially created when stars have low volume and average "dead" (consuming all fuel nuclear reactions in stars). These stars are not heavy enough to generate the temperature at the core needed to melt carbon in nuclear synthesis reactions after they turn into red giant stars during the burning stage of helium. The outer half of the red ticket will be pushed to the spaces forming the nebula, leaving behind a large core that contains mainly carbon and oxygen, which is white dwarfs
Great stars are small and small The average will end as white dwarfs, after all Hidro they have been converted into helium. Neard at their fusion reaction phase, such stars will expand and turn into red giant stars And then gradually lose the majority of materials in the outermost layers (creating nebula) while still very hot core (T> 100,000 k), this core then becomes a young white dwarf Age. You can watch the video: NASA astronaut drops the mirror outside the universe. Source: VTV. Content (T.H)

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