Examples of using Classical computers in English and their translations into Hungarian
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Computer
Classical computers process data in the form of bits.
Quantum computers are not going to replace classical computers.
For the most part classical computers are limited to doing one thing at a time, so the more complex the problem, the longer it takes.
Because of this, quantum computers are expected to process algorithms andsolve problems much faster than classical computers.
For most of the part, the classical computers are limited to doing one thing at a time and the complex the problem becomes, the longer it takes.
As a result, computers using qubits are able to store much more information using less energy andspace than classical computers.
Using classical computers to find the optimum sequence in a process to drive out inefficiency and improve productivity is possible when the number of variables is limited.
Another goal is the development of quantum computers, which are expected to performcertain computational tasks exponentially faster than classical computers.
Unlike classical computers which rely on bits that can only exist in one of two states(0 or 1), quantum computers use quantum bits which can exist in multiple states at once.
If large-scale quantum computers can be built, they will be able to solvecertain problems much faster than any of our current classical computers(for example Shor's algorithm).
Our customers are interested in solving real world problems that classical computers are less suited for and are often more complex than what we glean from a straightforward benchmarking test.”.
But when you consider how much classical computers revolutionized our world with a relatively simple use of bits and two options of 0 or 1, you can imagine the extraordinary possibilities when you have the processing power of qubits that can perform millions of calculations at the same moment.
However, even with the phenomenalstrides we made in technology and classical computers since the onset of the computer revolution, there remain problems that classical computers just cant solve.
Consider a classical computer that operates on a three-bit register.
Consider first a classical computer that operates on a three-bit register.
Free Mahjong- is a great game that relate to classical computer and board games.
A computer using qubits can store an enormous amount of information anduses less energy doing so than a classical computer.
So, this means that a computer using qubits can store an enormous amount of information anduses less energy doing so than a classical computer.
Thus, qubits can store anenormous amount of information while using less energy than a classical computer.
To find them, a classical computer must go through every single combination, one after the other, until it finds the one that works and breaks our encryption.
While the classical computer is very good at calculus, the quantum computer is even better at sorting, finding prime numbers, simulating molecules, and optimization, and thus could open the door to a new computing era,”.
It's a fantastic milestone,” says Philipp Gerbert, a member of the deep tech group atconsultancy firm BCG:“It's clear they exceeded the classical computer, by what margin you can debate.
In theory, they can do anything that a classical computer can.
A classical computer has a memory made up of bits, where each bit represents either a one or a zero.