영어에서 Quasars 을 사용하는 예와 한국어로 번역
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The quasars, are so far away the.
It's not true those quasars are independent.
Quasars and active galactic nuclei.
What Do Astronomers Use to Study Quasars?
Most quasars have very large redshifts.
Astronomers recently found a distant collection of quasars.
Quasars are literally the brightest objects in the universe.
By the mid 1960s, many radio astronomers were searching for new quasars.
Quasars are mostly found in far reaches of the ancient universe.
From X-ray Binaries to Quasars: Black Holes on All Mass Scales.
Quasars are primarily found in the most distant parts of the universe.
In particular, active galactic nuclei and quasars are believed to be the accretion discs of supermassive black holes.
DR10 also includes over 670,000 new BOSS spectra of galaxies and quasars in the distant universe.
Thus quasars and active galactic nuclei become normal galaxies.
Here we have an opportunity to see if these rapidly dimmed quasars remain dim or re-brighten.
We can assume that quasars have masses comparable to that of most galaxies.
Such proposals are offered because changes on such short timescales are not expected from the growth of the alleged supermassive black holes at the heart of the quasars.
Arp's model of ejection of quasars from active parent galaxies and their eventual change to normal galaxies.
Quasars blast away huge quantities of gas from the surrounding galaxy the equivalent of 10 Earths every minute.
From X-ray Binaries to Quasars: Black Holes on All Mass Scales.
Early quasars all appear somewhat similar, so astronomers know what colors the quasars should be.
Rapid changes in the emission properties of the quasars, on timescales very much in line with a creation scenario, are observed.
Quasars are very high redshift(figure 1) astronomical objects with broad emission line(BEL) spectra.
Thanks to the work of Hubble, we know how to look like quasars, comets, distant planets of the Solar system and even galaxies.
Recently, quasars have been revealed as being the nuclei of active galaxies, and, their diameter is estimated to be no larger than 1 light-year.
Astronomers are fairly certain that high-energy objects such as quasars did not provide enough energy to end the dark ages of the universe.
Quarks and quasars, gluons and galaxies, protons and persons, molecules and minds, sunsets and sensations, electrons and ebooks, anything and everything, are all composed of energy.
In many papers and several books1 he promoted the idea that quasars are born from the nucleus of active galaxies- parent galaxies.
The redshifts of galaxies and quasars when interpreted within big bang cosmology- the greater the redshift the greater the distance- means that the most distant objects are seen at a time when the universe was youngest.1.
Certainly it is possible that the standard interpretation for quasars as AGNs10 powered by a super-massive black hole is one possible explanation.