Examples of using Classical computers in English and their translations into Chinese
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Due to the way these particles behave, operations can be done much more quickly and use less energy than classical computers.
NIST and others in the security industry have started to conduct research about quantum-safe cryptographies for classical computers that are capable of resisting quantum attacks.
A new method determines whether circuits are accurately executing complex operations that classical computers can't tackle.
Classical computers perform all of their calculations by converting data into binary code.
Contrary to some sensational claims, quantum computers will not completely replace classical computers anytime soon.
And they didn't think it likely that quantum computers will fully replace classical computers- instead, they're meant to augment classical computers.
Algorithm design for quantum computers is hard because designers face two difficult problems not faced in the construction of algorithms for classical computers.
The potential of quantum computers is tremendous, and we can achieve a lot that was thought to be nearly impossible with classical computers.
That capability may help a quantum computer become a far more powerful way to process certain kinds of problems that classical computers can't handle.
These companies are trying to build hardware that replicates the circuit model of classical computers.
But scientists have struggled to build devices with enough units of information(quantum bits) to make them competitive with classical computers.
Around the same time they also proved that quantum computers can solve all the problems that classical computers can solve.
In practice quantum computers and classical computers will likely work hand-in-hand.
An important point is, that quantum computers are only expected to outperform classical computers on certain tasks, not in general,” she said.
Given enough time… classical computers and quantum computers can solve the same problems,” said Thomas Wong of Creighton University.
As long as quantum circuits remain small, classical computers can keep pace.
Given enough time… classical computers and quantum computers can solve the same problems,” Thomas Wong of Creighton University told Quanta Magazine.
Quantum computers will never reign‘supreme' over classical computers, but will rather work in concert with them, since each have their unique strengths.
The language that classical computers speak is all about manipulating strings of zeros and ones, but the language of quantum physics is quite different.
Classical computers can't model chemical and molecular interactions in very much detail- the interactions are just too complicated.