Examples of using Accurate atomic clock in English and their translations into Polish
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Computer
The TS-500 Accurate Atomic Clock is a radio time code receiver.
It does this by using a NTP network time server,which receives the time from a secure and accurate atomic clock source.
Time to get accurate Atomic clock time servers for computer networks.
Those chronological pioneers at NIST have teamed up with the University of Colorado and have developed the world's most accurate atomic clock to date.
Galleon specialises in providing accurate atomic clock solutions for computers and computer networks.
Currently the GPS satellite network can provide navigational accuracy to within 5 metres which goes to show just how accurate atomic clocks can be.
The answer lies with Universal Coordinated Time(UTC)an international time-zones developed in the 1970'2 that is based on accurate atomic clocks.
The caesium fountain will join the ranks of several most accurate atomic clocks in the world and is the second such clock in Poland.
NTP time servers, often referred to as network time servers, are a secure andaccurate method of ensuring any technology is running accurate atomic clocks time.
In 1971, J. C. Hafele andRichard E. Keating placed four highly accurate atomic clocks on a jet aircraft and flew them eastwards around Earth.
By placing this accurate atomic clock into orbit the effect of Earth's gravity is lessened allowing PHARAO to be more accurate than Earth based clock. .
TimeSync is completely configurable by an Administrator and incorporates an audit trail option andthe ability to automatically generate an e-mail alarm in the unlikely event of losing synchronisation to the TS-500 Accurate Atomic Clock.
These too are highly accurate atomic clock generated time sources and as both methods come from a secure source the computer network will remain secure.
Any source of time to synchronize a network to should be UTC(Coordinated Universal Time)which is a global timescale controlled by the world's most accurate atomic clocks and the number one source for finding a UTC time server is the internet.
For this reason each satellite has a highly accurate atomic clock onboard which can also be used by NTP(Network Time Protocol) servers to synchronise computer networks.
It will work in conjunction with the first GALILEO experimental satellite, GIOVE-A, carrying critical new technologies to be tested in space and needed for the performances of the GALILEO systems,notably the most accurate atomic clock ever put into orbit.
Caesium atomic clocks are the most reliably accurate atomic clocks anywhere, neither losing nor gaining a second in several millions of years.
In 1999, NPL-F1 began operation with an uncertainty of 1.7 parts in 10 to the 15th power, or accuracy to about one second in 20 million years,making it the most accurate atomic clock ever made a distinction shared with a similar standard in Paris.
The first accurate atomic clock was built y Britain's National Physical Laboratory in 1955 by Dr Louis Essen who based his clock around the oscillation of the caesium -133 atom.
UTC or Coordinated Universal Time is a global timescale,it is controlled by highly accurate atomic clocks but kept the same as GMT(Greenwich Meantime) by the use of leap seconds, added when the Earth's rotation slows down.
The first accurate atomic clock was built y Britain's National Physical Laboratory in 1955 by Dr Louis Essen who based his clock around the oscillation of the caesium -133 atom.
They can only do this by having onboard their own highly accurate atomic clock as the distance the satellites are away from the Earth, even an inaccuracy of a second or two could mean a sat navigation's location could be miles out.
The first accurate atomic clock, a caesium standard based on a certain transition of the caesium-133 atom, was built by Louis Essen in 1955 at the National Physical Laboratory in the UK. Later in 1983 it became the first NSAID to be available over-the-counter in the U.K. and in the U.S. in 1984.
The atomic clock aboard GIOVE-B is currently the most accurate atomic clock in orbit, and with similar technology intended for all Galileo satellite, this is the reason why the European system will be more accurate than GPS.
One of the world's most accurate atomic clocks is to be launched into orbit and attached to the International Space Station(ISS) thanks to an agreement signed by the French space agency.
The first accurate atomic clock, a caesium standard based on a certain transition of the caesium-133 atom, was built by Louis Essen in 1955 at the National Physical Laboratory in the UK.
Louis Essen built the first accurate atomic clock in 1955 at the National Physical Laboratory in the UK, since then atomic clocks have become increasingly more accurate with modern atomic clocks able to maintain time for over a million years without ever losing a second.
Each GPS satellite carries a highly accurate synchronised atomic clock.
The most accurate commercial atomic clock available today uses the cesium atom and the normal magnetic fields and detectors.