Examples of using Quantum computers in English and their translations into Hungarian
{-}
-
Colloquial
-
Official
-
Medicine
-
Ecclesiastic
-
Financial
-
Programming
-
Official/political
-
Computer
The quantum computers are coming.
Where are the quantum computers?
Quantum Computers… Are They Here or Not?
A new path towards quantum computers.
Quantum Computers and Bitcoin.
The focus is on the programming of algorithms on quantum computers.
And so quantum computers will never be usable.
They developed together the HBSwiss software, using quantum computers.
I know what quantum computers are and how entanglement triggers work.
D-Wave is the only company that is currently selling quantum computers.
Quantum computers are weirder and more powerful than we thought.
Such devices may lead scientists in the future to developing quantum computers.
I know what quantum computers are, and how entanglement triggers work.
He added,“We are convinced that commercially available quantum computers will open up previously unimaginable opportunities.
Quantum computers are not intended to replace classical computers. .
We were wrong, because quantum computers are coming, and they're going to change the game completely.
Quantum computers are more rapid than a traditional, According to a new study- Omicrono.
And, as has been argued, quantum computers might also develop much more slowly than the researchers have modeled.
Quantum computers exploit the quantum properties of matter to perform calculations.
Superposition could, in theory, let quantum computers run calculations in parallel by holding information in quantum bits.
Quantum computers will break all of the encryption currently used to protect you and I from hackers.
Because of this, quantum computers are expected to process algorithms and solve problems much faster than classical computers. .
Quantum computers can simulate chemical and biological processes that are far beyond the reach of our classical computers. .
However, quantum computers are not yet present and probably will not be for a while.
Plus, quantum computers today have extremely high error rates, requiring even more qubits for error correction.
Quantum computers are different from other computer systems such as DNA computers and standard computers based upon transistors.
Quantum computers could also be more secure by encrypting information in elaborate codes that could be broken only by using a laser and complex decoding formulas.
And when quantum computers arrive in the next 10 to 15 years, they will even more rapidly crack the complex mathematics that underlies many of our encryption systems today.
Not even quantum computers will be able to crack these keys because they are not based on computational complexity like classic cryptography," said Andrew Shields, assistant managing director at the Cambridge Lab.