Examples of using Qubits in English and their translations into Ukrainian
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Computer
Bristlecone, boasts a staggering 72 qubits.
In Q qubits are made as topological qubits.
The computer Google created has 53 qubits.
With qubits and quantum superposition, all possible options would be able to be tested simultaneously.
Quantum computers rely on quantum bits, or“qubits.”.
If we talk about qubits based on other materials, they work when you use the magnetic field.
Thus, IBM hascreated quantum computer having 50 qubits.
Sycamore contains 54 qubits, although one of them did not work, so the device ran on 53 qubits.
These individual photonsnow have a higher information capacity than qubits.
Sycamore comprises 54 qubits, although one of them didn't work, so the device ran on 53 qubits.
Sycamore is the name of Google's quantum processor comprising 54 qubits.
Sycamore comprises 54 qubits, although one of them couldn't act, so the device worked on 53 qubits.
They hope to create an experimental model with five qubits for three years.
In fact, a quantum computer with 300 qubits could run more calculations in an instant than there are atoms in the universe.
Such units of quantum information arenow commonly called quantum bits, or qubits.
The scientists found that, working with just two qubits,“time reversal” was achieved with a success rate of 85%.
Testers from Switzerland with the help of Cori II have already managed to model quantum systems with 30, 36,42 and 45 qubits.
The scientists reveal that working with just two qubits, time reversal was achieved with a success rate of 85 percent.
By reducing an algorithm into a series of laser pulses that push on the appropriate ions,we can reconfigure the wiring between these qubits from the outside,” he said.
The scientists found that, working with just two qubits,‘time reversal' was achieved with a success rate of 85 per cent.
So one way to achieve quantum supremacy is tocreate a system that can support 49 qubits in a superposition of states.
Scientists have tried to build working devices with enough qubits in the past in order to make them competitive through conventional types of computer.
The production becomes easier than devices atomic level,the technology allows to fit a million qubits in an area of 1 square millimeter".
Although the module has only five qubits, its flexibility allows for programming quantum algorithms that have never been run before, Debnath says.
If the algorithm isrun on a quantum computer made of relatively few qubits, a classical machine can predict its output.
Information stored in these qubits would be much more resistant to outside disturbance than are other technologies and would, in particular, make error correction easier.
But, scientists have struggled to build working devices with enough qubits to make them competitive with conventional kinds of computers.
Moving up to 1K reduces the amount of cooling equipment that must be packed between each qubit, and allows more qubits to pack into a smaller amount of space.