Examples of using Quantum computer in English and their translations into Korean
{-}
-
Colloquial
-
Ecclesiastic
-
Ecclesiastic
-
Programming
-
Computer
A trapped ion quantum computer uses ions as its particles
But 1QBit's software instead simulates those experiments on a quantum computer.
As such, IBM believes that this sort of quantum computer will work best as a companion to classical supercomputers.
First, however, the teacher network itself needs to learn enough about the quantum computer or the component of it that is to be controlled.
The 50-qubit quantum computer will be 10 times larger than a 5-qubit system already housed by IBM.
A sufficiently powerful quantum computer won't necessarily be available by 2025.
In theory, a sufficiently powerful quantum computer would, however, be able to solve these problems efficiently.
While a traditional computer reads all books in a library in a linear fashion, a quantum computer reads all books simultaneously.
While a classic computer would read every book in a library in a linear fashion, a quantum computer would read all the books simultaneously.
While a traditional computer would read every book in a linear way, a quantum computer would read all the books at the same time.
For example, recently at CES(ConsumerElectronics Show) in January 2019, IBM debuted its“Q System One” as the first standalone quantum computer geared for scientific and commercial use.
For the same reason, a“large weight” attack would also be much more efficient on a quantum computer.
And the Chinese Academy of Sciences announced last month that it is working to build a quantum computer in the next several years.
To the NSA's quantum computer farm. So, I was kind of sort of hoping that you could give us access.
For example, recently at CES(Consumer Electronics Show) in January 2019, IBM debuted its“Q System One” as the first standalone quantum computer geared for scientific and commercial use.
Humans and traditional computers wrestle with the chaos as best they can: A quantum computer might tame it.
The system is designed so that more atoms and lasers can be added to build a bigger and faster quantum computer, able to factor much larger numbers.
Instead, the researchers have proposed an alternative method that involves using the quantum computer to run a number of easy calculations that we already know the answer to and establishing the accuracy of those results.
In 1994, a quantum physicist known as Peter Shor, showed that these types of very hard to factor problems could be solved in seconds to minutes on a quantum computer.
Just a month before the release of the report, researchers from MIT and the University of Innsbruck in Austria demonstrated a five-atom quantum computer capable of running Shor's algorithm to factor the number 15.