Примери за използване на Times the mass of the sun на Английски и техните преводи на Български
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It sits there about, say, 1.3 times the mass of the Sun.
A single star, 150 times the mass of the Sun, can produce 20 or 25 solar masses of iron.
They also determined that it was a huge star… twenty times the mass of the Sun.
Stars have to be 8 or 1 0 times the mass of the Sun to explode on their own.
Inside the bubble sits SAO 20575, a star between 10 and 20 times the mass of the sun.
So, we're cramming four million times the mass of the sun into that small volume.
Supermassive ones are the ones that have masses of anywhere from a million to a billion times the mass of the sun.
Something like 25 or 30 times the mass of the Sun or more.
But in addition to the stellar-sized black holes There are others that are mammoth Millions to a billion times the mass of the sun.
And remember, its gonna have three to four times the mass of the Sun, but it's going to be far denser.
Most notably, we find that almost all black holes formed from stars are lighter than 45 times the mass of the Sun.
A dying star that was once about five times the mass of the Sun is at the center of this fury.
About 3 times the mass of the sun was converted into gravitational waves in a fraction of a second.
These paths reveal that Sgr A* is four million times the mass of the sun, somewhat more massive than had been thought a decade ago.
So I could say the remnant…,the remnant… the dense remnant has more than three to four times the mass of the Sun.
If you have a star,a supermassive star that's 100 times the mass of the Sun, at the end of its life, the core runs out of fuel.
Previous estimates put the mass of the MilkyWay ranging between 500 billion and 3 trillion times the mass of the Sun.
Chandrasekhar calculated that a cold star of more than about one and a half times the mass of the sun would not be able to support itself against its own gravity.
For many years, scientists have found conclusive evidence for smaller black holes that contain about five to thirty times the mass of the sun.
It already contains eight to 10 times the mass of the sun and is still surrounded by an additional 2,000 solar masses of gas and dust from which it can feed further.
Moreover, stars are forming at a high rate in the galaxy, at several hundred times the mass of the Sun per year.
If that core is below about three times the mass of the Sun(with the original star between 10 and 30 times the mass of the Sun), it becomes a neutron star.
For comparison, the black hole at the center of the Milky Way galaxy is estimated to have only 4-5 million times the mass of the sun.
In the case of Cygnus X-l, this is about six times the mass of the sun, which, according to Chandrasekhar'r result, is too great for the unseen object to be a white dwarf.
Dubbed GW170608, was produced by the merger of two relatively light black holes, seven and 12 times the mass of the sun, at a distance of about a thousand million light-years from Earth.
ASASSN-14li lies at the heart of a galaxy 290 million light-years away from Earth and harbors between 1 million and10 million times the mass of the sun.
Once the mass is found, it can be determined if the candidate is a neutron star or a black hole,since neutron stars always have masses of about 1.5 times the mass of the sun.