Examples of using Quantum computers in English and their translations into Portuguese
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Qcl-- A language for quantum computers.
Now, quantum computers are available for hire on the cloud.
I work for a company that designs tech for quantum computers.
There are five quantum computers in the world.
They developed together the HBSwiss software,using quantum computers.
How do modern quantum computers actually work?
It would sound polite if you said I scared myself thinking about quantum computers.
Will all our computers be quantum computers in the future?
However, quantum computers don't yet exist and probably won't for a while.
This is very important for the next step in simulating quantum computers and information technology.
I know what quantum computers are and how entanglement triggers work.
Fault-tolerant quantum computation is concerned with the problem of noise in quantum computers.
There are five quantum computers in the world, we only know the whereabouts of four of them.
Really funny is the videoof x86-compatible assembler code, because HBSwiss claims to use(non-existing) quantum computers.
Thus, for this task, quantum computers are no better than classical ones.
PP also contains BQP,the class of decision problems solvable by efficient polynomial time quantum computers.
Quantum computers perform calculations by manipulating qubits within a register.
In order to understand why quantum computers are interesting, it's necessary to briefly!
Quantum computers are more rapid than a traditional, According to a new study- Omicrono.
There is a common misconception that quantum computers can solve NP-complete problems in polynomial time.
Quantum computers are different from digital computers based on transistors.
This reduces computational costs in quantum computers which is supposed to run the learning algorithm.
Quantum computers enable new algorithms with completely different complexity characteristics than their classical equivalents.
This leads to an evident rise in the potential of quantum computers to provide more efficient technological system with increased speed.
Future quantum computers will solve problems that are not tractable with existing hardware and algorithms.
These laws could help us better understand chemical reactions like plant photosynthesis anddetermine how much energy quantum computers will need to operate.
Thus in the presence of large quantum computers an n-bit key can provide at least n/2 bits of security.
Quantum computers can do some kinds of matrix inversion with logarithmic resources a matrix inversion is equivalent to solving a linear system of equations.
What makes quantum computing so fast isn't the processing speed of quantum computers(which is slow) or the memory of the computers which is absurdly tiny.
Quantum computers share theoretical similarities with non-deterministic and probabilistic computers; one example is the ability to be in more than one state simultaneously.

