Examples of using Quantum system in English and their translations into Chinese
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He is a quantum system.
EIGENSTATE: One of a finite number of states that a quantum system can be in.
To understand a quantum system, physicists talk frequently about its“wave function.”.
That is, any measuring device is itself a quantum system containing uncertainty;
A qubit is a quantum system that encodes the 0 and the 1 into two distinguishable quantum states.
The key idea is that measuring a quantum system irrevocably disrupts it.
Once a quantum system is observed, the specific location or state is established thus breaking the superposition.
The key idea is that measuring a quantum system irrevocably disrupts it.
Experiments have shown that the working of the human minddirectly affects the behaviour of subatomic particles- the quantum system.
The second you observe a quantum system, it picks a specific location or state- breaking the superposition.
A: Where the applications are most obvious iswhen we want to figure out how some big quantum system is going to behave.
That's because in a quantum system, the very act of observing information in transit changes the nature of that data.
Many famous experimentshave shown that the simple act of observing a quantum system can change the properties of the system. .
The second you invoke a quantum system, it indicates a particular location or condition- breaking down the superposition.
Here, one of the biggest issues is the interpretation of the so-called wave function,which describes the state of a quantum system.
It says that the act of observing a quantum system makes the wavefunction‘collapse' from a spread-out curve to a single data point.
One of them is quantum superposition, the fact that a quantum system can be in two different states at the same time.
They directed the quantum system to factor the number 15- the smallest number that can meaningfully demonstrate Shor's algorithm.
Such an experiment might involve the creation of a highly complex quantum system, containing many components that exist in a novel entangled state.
They directed the quantum system to factor the number 15- the smallest number that can meaningfully demonstrate Shor's algorithm.
The resolution refers to how much information is extracted from the quantum system, and the disturbance refers to how much the system is irreversibly changed.
Since any quantum system can have one or more quantum numbers, it is a futile job to list all possible quantum numbers.
The resolution refers to how much information is extracted from the quantum system, and the perturbation refers to how much the system is irreversibly altered.
The fact that a quantum system can take away information that you already have by changing itself just because you have observed it is beyond strange.
So how do we check whether the quantum system delivers the right result,” asks the theoretical physicist Christian Kokail.
Now imagine a quantum system with many billions of atoms, all of which interact with each other according to complicated quantum equations.
It's not too surprising that a quantum system, such as a quantum computer, could be used to simulate another quantum system.
Things become even more complicated when the quantum system is open, meaning that it is subject to the disturbances of its surrounding environment,” Savona adds.
Error correction- Because truly isolating a quantum system has proven so difficult, error correction systems for quantum computations have been developed.