Приклади вживання Gravitational lensing Англійська мовою та їх переклад на Українською
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Gravitational lensing was explained by dark matter.
This method is also moreefficient than the more complex method of using gravitational lensing.
And gravitational lensing is what let us do it.".
Another important tool forfuture dark matter observations is gravitational lensing.
Gravitational lensing was predicted by Albert Einstein.
Such objects could be detected in principle through gravitational lensing of gamma rays.
Simulated gravitational lensing(black hole going past a background galaxy).
One of the most prominentexamples of this has been the emergence of"gravitational lensing observations".
This effect is called gravitational lensing, and this specific case is the Einstein Cross.
The very large mass of this clustermakes it useful for the study of dark matter and gravitational lensing.
Strong gravitational lensing as observed by the Hubble Space Telescope in Abell 1689 indicates the presence of dark matter.
Abell 2744 galaxy cluster-extremely distant galaxies revealed by gravitational lensing(16 October 2014).
In the past astronomers used this gravitational lensing effect to calculate the distribution of dark matter in galaxy clusters.
To pinpoint the location of this mysterioussubstance the team used a phenomenon known as gravitational lensing.
Gravitational lensing studies of the Bullet Cluster are claimed to provide the best evidence to date for the existence of dark matter.[3][4].
To pinpoint the location of this elusivesubstance the team exploited a phenomenon known as gravitational lensing.
Sometimes gravitational lensing can even produce multiple images of the object as light is bent in different directions around the foreground cluster.
To receive the new results presented here the data was used in a different way,without using gravitational lensing.
This process is called gravitational lensing and in many cases can be described in analogy to the deflection of light by(ex. glass) lenses in optics.
Although dark matter cannot be seen,the team could deduce its location using a technique called gravitational lensing.
This is known as gravitational lensing and astronomers have leveraged its effect for years to help boost the visual prowess of our telescopes.
Although dark matter can not be seen, the team was able todeduce the location using a technique called gravitational lensing.
Former UC Davis graduate student Jen-Wei Hsueh,Fassnacht and colleagues used gravitational lensing to put a limit on the warmth and therefore the mass of dark matter.
Richard Massey is still trying to answer that question and is pioneering a newway of detecting Dark Matter-- gravitational lensing.
It was discovered when the Optical Gravitational Lensing Experiment(OGLE) survey observed the smaller star eclipsing the larger primary.
Scientists are studying the material jutting out frominside the cluster to better understand dark matter and phenomena like gravitational lensing.
Chris Fassnacht, a physics professor at UC Davis and colleagues are using this distortion,called gravitational lensing, to learn more about the properties of dark matter.
This technique, which is commonly employed by astronomers to study distant galaxies, star clusters, and even exoplanets,is known as gravitational lensing.
There have been no spectroscopic signatures of anything other than hydrogen or helium,and its luminance cannot be ascribed to gravitational lensing, black holes or exterior excitation.