Примери за използване на Quantum system на Английски и техните преводи на Български
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How would you determine the ground state of a quantum system with no exact solution?
When you look at a quantum system, it selects a specific location or country that violates the overlay.
There is a measure for the amount of entanglement in quantum system, called„entropy of entanglement“.
The second you observe a quantum system, it picks a specific location or state- breaking the superposition.
There is also a measure for the quantity of entanglement in a quantum system, called“entropy of entanglement.”.
When the quantum system is observed, the specific position or situation is established and thus the superposition is disrupted.
There is a measure for the amount of entanglement in quantum system, called„entropy of entanglement“.
Volkswagen believes the quantum system can replace current traffic models that are created by conventional supercomputers.
There is a measure for the amount of entanglement in a quantum system, called"entropy of entanglement".
The evolution of a quantum system is governed by Schrödinger's Equation, which gives us the probability of a particle being in a certain region.
This is a similar choice when the scientist decides which properties of the quantum system to study.
We want to find out whether space-time is a quantum system just like matter is,” said Craig Hogan of Fermilab.
This is a choice similar to the choice a scientist makes when deciding which properties of the quantum system to study.
Spectral lines are the result of interaction between a quantum system(usually atoms, but sometimes molecules or atomic nuclei) and a single photon.
Even, the potential for practical application, this development drastically improves ourunderstanding of quantum mechanics in general, and more specifically within a quantum system.
The advantage a quantum computer confers is the ability of a quantum system to be in a superposition of states.
Now imagine a quantum system with many billions of atoms, all of which interact with each other according to complicated quantum equations.
The experiments depended on the ability to closely monitor what information about a quantum system gets imparted to its environment.
All I can tell you is that a quantum system is not a linear one, and your logic will fall on the floor if you try to analyze these things.
The teams were also able to set a new record for how long a silicon quantum system retains information, known as coherence time.
This quantum system seems to work nicely for three of the four known forces of nature- the strong nuclear force, which holds the particles in the atomic nuclei together;
The authors were also able to increase the time over which a silicon quantum system retains information, known as coherence time.
This coupling between a quantum system in a superposition and the environment in which it is embedded leads the system to'collapse' or decay over time into one state or another.
This means that many independent observers can make measurements of a quantum system and agree on the outcome- a hallmark of classical behavior.
The basic idea is that when a quantum system interacts with a measuring apparatus, their respective wave functions become entangled, so that the original quantum system ceases to exist as an independent entity.
One of the stranger aspects of the quantum world is superposition,the ability of a quantum system to exist in more than one state at one time.
IBM says it's the“first quantum system to consolidate thousands of components into a glass-enclosed, air-tight environment built specifically for business use, a milestone in the evolution of commercial quantum computers.”.
The other fact is that in the ground state-- the lowest energy state of a quantum system-- the wave function is always very smooth; it has the minimum number of wiggles.
The basic idea is that when a quantum system interacts with a measuring apparatus, their respective wavefunctions become There was an error working with the wiki: Code[122], so that the original quantum system ceases to exist as an independent entity.
The researchers note that-- while other teams have previously made analogues of monopoles--, their demonstration is the first in a quantum system which can be tested by experiment.