Examples of using Classical computer in English and their translations into Hebrew
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Colloquial
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Ecclesiastic
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Computer
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Programming
How does a classical computer work?
Classical computers process data in the form of bits.
This assumption is valid for classical computers.
A classical computer is very fast.
CogniFit personalized brain training program vs. classical computer games.
And with that same classical computer it would take 1,600 years.
The same calculation would take dozens of minutes on a classical computer, Dr. Hofmann said.
So if I take a classical computer, it works in the gigahertz regimes, 10 to the 9 operations per second.
But there are some problems out there that justcannot be solved efficiently using a classical computer.
And using their same classical computers, it will take 3,000 years.
To try to understand this, I'm going to go back and describe what a classical computer looks like in my mind.
So as a problem grows more complicated, a classical computer needs correspondingly more bits to solve it, while a quantum computer will theoretically be able to handle more andmore complicated problems without requiring as many more qubits as a classical computer would need bits.
In theory,quantum computers could outstrip the computational limits of classical computers.
Such a quantum computer would beable to solve problems currently beyond the abilities of classical computers, such as the factorization of large numbers, which currently requires exponentially large computing time.
Its test was designed to show that its 49-qubit systemcould solve a problem designed to be beyond any classical computer.
While technologies that currently run on classical computers, such as Watson, can help to find patterns and insights buried in vast amounts of existing data, quantum computers will deliver solutions to important problems where patterns cannot be detected because data doesn't exist.
That's a 768-bit number andit took them three years using the most powerful classical computers that existed.
The behaviour of tiniest particles allows for muchquicker operations which use less energy than classical computers.
Because of the way small particles behave,operations can be performed faster and use less power than classical computers.
Due to the way these particles behave, operations can be done much more quickly anduse less energy than classical computers.
Due to the way the tiniest of the particles behave operation can be done but more quickly anduse less energy band classical computers.
This means a computer using these bits can store ahuge amount of information using less energy than a classical computer.
This means that a computer using qubits can store an enormous amount of information anduses less energy doing so than a classical computer.
So that's the international race to try and build a large-scale quantum computer that cando calculations you simply cannot do with a classical computer.
And if we control quantum physics, we could actually build computers in the quantum regime thatare predicted to have exponential speedup over classical computers.
Quantum computing is an emerging form of computing that takes advantage of quantum mechanical phenomena to solve certain types ofproblem that are effectively impossible to solve on classical computers.