Examples of using Atomic clock is in English and their translations into German
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In terms of accuracy an atomic clock is unrivalled.
The atomic clock is unrivalled in its chronological accuracy.
And for other technologies the atomic clock is even more crucial.
This atomic clock is so precise that it deviates theoretically+/- 1 second in one million years.
The high above sea level an atomic clock is placed, the quicker time travels.
The atomic clock is the culmination of mankind's ability to keep time that has spanned several millennia.
These come direct from atomic clocks(in the cased of GPS the atomic clock is onboard the satellite) and so can't be hijacked by malicious users or viruses.
The Roof top Atomic clock is designed for applications that require the antenna to be mounted up to 170m(500 feet) away from the computer.
Because the energy levels of the caesium atom(thequantum standards) are always the same and is such a high number, the caesium atomic clock is incredibly precise.
Exactly what an atomic clock is, is often misunderstood.
Their accuracy is incredible as an atomic clock will not drift by as much as a second within a million years, and when this is compared to the next best chronometers,such as electronic clock that can drift by a second in a week, an atomic clock is incredibly more precise.
Unfortunately, an atomic clock is not designed to fit in a standard server room.
While Big Ben is trusted by tens of thousandsof Londoners to provide accurate time, the modern atomic clock is used by millions of us every day without realising it.
In simple terms an atomic clock is a device that uses the oscillations of atoms at different energy states to count ticks between seconds.
The controlling radio signal for the National Physical Laboratory‘s atomic clock is transmitted on the MSF 60kHz signal via the transmitter at, CumbriaAnthorn, operated by British Telecom.
The new Rubidium Atomic Clock is an epiphany of more than 20 years' expertise in the digital audio world, making vividly real the clarity, depth, width and 3-dimensionality distinctive of the analog sound.
NTP is hierarchical and divided into‘stratum' an atomic clock is a stratum 0 device, a time server that receives the clocks signal is a stratum 1 device and a network device that receives a signal from a time server is a stratum 2 device. NTP can support 12 stratum(realistically, although more is possible) and each strata can be used as a device to synchronise to. Therefore a stratum 2 device can synchronise other machine lower down the strata and so on.
One of the most widely used applications for atomic clocks is in the communications industry.
Atomic clocks are not just used to keep track of time.
Atomic clocks are utilised by all sorts of technologies;
In fact, atomic clocks are even more accurate than the rotation of the Earth.
Atomic clocks were developed to try to keep time as precise as possible.
Atomic clocks are used for thousands of applications all over the world.
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.
The ultra precise nature of atomic clocks is the basis for technologies such as satellite navigation(GPS), air traffic control and internet trading.
The accuracy of atomic clocks is also the basis for satellite navigation such as GPS global positioning system.
This average number from atomic clocks is very important for equality between countries, because it is helping to coordinate personal clocks of the world and other official standards.
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.
The future for atomic clocks is ever increasing accuracy combined with scaling down the size and cost of them.