Примери за използване на Gravitational-wave на Английски и техните преводи на Български
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Gravitational-wave finding causes'spring cleaning' in physics.
The black holes measured by gravitational-wave observations from LIGO and Virgo(blue);
The observatories are also releasing their first catalog of gravitational-wave events.
Gravitational-wave echoes may confirm Stephen Hawking's hypothesis of quantum black holes.
The observatories are also publishing their first gravitational-wave events catalog.
Infrared imaging, gravitational-wave detection devices, and radio telescopes relayed a constant stream of data about the cosmos.
The new event GW170729 is the most massive and distant gravitational-wave source ever observed.
Only the gravitational-wave sensors seem to have detected the two events, which suggests they are collisions of two black holes.
The event known as GW170729 was the most massive and distant gravitational-wave source observed to date.
LIGO(Laser Interferometer Gravitational-Wave Observatory) is a collaborative project with over 1000 researchers from more than twenty countries.
The newly announced GW170729 event, detected July 29, 2017, is the most massive and distant gravitational-wave source ever observed.
The world's largest gravitational-wave detectors may have just found the first evidence of a black hole devouring a neutron star.
GW170729, detected in the second observing run on July 29, 2017, is the most massive and distant gravitational-wave source ever observed.
LIGO(Laser Interferometer Gravitational-Wave Observatory) is a collaborative project involving over a thousand researchers from different countries.
The detection of a continuous wave would offer a unique opportunity to study gravitational-wave polarizations.
One consequence of the gravitational-wave discovery was that it allowed scientists to search for additional dimensions, beyond the usual three.
And since the pulsars we study are about 3,000 light-years away,they act as a galactic-scale gravitational-wave detector.
This is generally not possible with the current network of gravitational-wave detectors and the short-lived signals detected so far.
Echoes in gravitational-wave signals suggest that the event horizon of a black hole may be more complicated than scientists currently think.
The newly produced spinning black hole has about 53 times mass of our sun i.e. about 3 solar masses were converted into gravitational-wave energy during merger.
The Laser Interferometer Gravitational-Wave Observatory or in short LIGO is a joint project of more than thousands of scientists from nearly twenty countries around the Earth.
The newly produced spinning black hole has about 53 times the mass of our sun,which means that about 3 solar masses were converted into gravitational-wave energy during the coalescence.”.
Echoes in gravitational-wave signals suggest that the event horizon of a black hole may be more complicated than scientists currently think.
The newly produced spinning black hole has about 53 times themass of our Sun, which means that about three solar masses were converted into gravitational-wave energy during the coalescence.
One consequence of the gravitational-wave discovery was that it allowed scientists to search for additional dimensions, beyond the usual three.
So after decades of development, construction and imagination and a breathtaking amount of hard work, they built their detector, called LIGO:The Laser Interferometer Gravitational-Wave Observatory.
Recent upgrades to the LIGO and Virgo gravitational-wave observatories have significantly improved their sensitivity, creating a renewed interest in these predicted effects.
During second observation, which endured from November 30, 2016, to August 25, 2017, yielded one binary neutron star merger andseven extra binary black hole mergers, including the four new gravitational-wave events being accounted for now.
LIGO, the Laser Interferometer Gravitational-Wave Observatory, is a collaborative project with more than 1,000 researchers from more than 20 countries.
The event was recorded by the Laser Interferometer Gravitational-Wave Observatory(LIGO), whose founders were awarded this year's Nobel Prize in Physics.