Examples of using Classical computers in English and their translations into Greek
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Computer
quantum computers might be able to efficiently solve problems which aren't practically feasible on classical computers.
An international team has shown that quantum computers can do one such analysis faster than classical computers for a wider array….
Quantum computers may be able to efficiently solve problems which are not practically feasible to solve on classical computers.
they may be able to efficiently solve problems which are not practically feasible on classical computers.
When it gets beyond say 10,000 by 10,000 entries, it becomes hard for classical computers", hence the need for a new type of algorithm.
What makes encryption codes so difficult even for modern classical computers to break is the fact that they're based on factors of extremely large numbers, requiring inordinate amounts of time to isolate by"brute force.".
Unlike classical computers which rely on bits that can only exist in one of two states(0
are unlikely to replace classical computers.
The system is far from being able to compete with classical computers, but the company hopes that the experimental service will encourage the development of quantum algorithms
are unlikely to replace classical computers.
the past two decades, building quantum machines that can outperform classical computers in specific tasks- an important milestone termed"quantum supremacy"- remains a challenge.
Large-scale quantum computers would theoretically be able to solve certain problems much more quickly than any classical computers that use even the best currently known algorithms,
An international team has shown that quantum computers can do one such analysis faster than classical computers for a wider array of data types than was previously expected.
While classical computers rely on electrical current to create bits that can either be on(1)
new frontiers for discovery that are virtually unattainable using classical computers alone,” he added.
Not only do quantum computers promise a dramatic increase in speed over classical computers in a variety of computational tasks;
which had not been made up until now in part because it's very difficult for classical computers to model these systems.
the past two decades, building quantum machines that can actually outperform classical computers in some specific tasks- an important milestone termed"quantum supremacy"- remains challenging.
A team of international researchers have demonstrated that quantum computers have the ability to perform analysis quicker than classical computers, for a broader array of data types than was previously anticipated.
to describe the point at which quantum computers can do things that classical computers simply can't.