Additional examples are adjusted to the entries in an automated way - we cannot guarantee that they are correct.
Our sun should become a white dwarf in about five billion years.
Such a star later came to be known as a white dwarf.
"Another space construction is coming into view around the white dwarf."
Complex life should not have developed so close to a white dwarf.
It was then thought to be a cool white dwarf close to the Sun.
We observe a large number of these white dwarf stars.
It is now developing into a red giant and will one day end as a white dwarf.
At least 19 members of this cluster are white dwarfs.
The estimated cooling age of the white dwarf is 500 million years.
With a mass 2.32 times that of the Sun, this star will end its life as a white dwarf.
The white dwarf can be seen as the bright dot near the photo's center.
Our Sun will eventually become a white dwarf butterfly but not for another 5 billion years.
Then, after another one or two billion years, they shrink into white dwarfs.
The Sun's own destiny, in about 5 billion years, is to die and become a white dwarf.
The secondary component of this system is a white dwarf.
The future for the star is to eventually cool down to make a low mass white dwarf.
From that point forward it will evolve into a single white dwarf star.
White Dwarf published a number of additional characters in issue 102.
Even the radiation from the white dwarf would not mask it.
I'll give you the position of the white dwarf.
Almost all stars were white dwarfs, fading to the end.
The central star is a white dwarf of mag 14.03.
The star was in business again, as a fast-living white dwarf.
Eventually the central star collapses to form a white dwarf.
The remnants of its core will remain as a white dwarf.