Examples of using Wave function in English and their translations into Chinese
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He also describedhow measurement could cause a collapse of the wave function.
He proposed that the wave function collapses due to its interaction with consciousness.
The problem is that it's impossible experimentally to know what the wave function is.
And the fact that the wave function can be split into two or more bubbles is strange as well.
Perhaps the small electron bubbles are formed by the portion of the wave function that goes through the surface.
This illustrates that wave function collapse can occur even in the absence of particle detection.
The sticky part is how to connect this wave function with what we observe.
But the wave function will vary very rapidly near the peak, up on one side, and down on the other.
He would try to figure out what the quantum wave function of this huge number of atoms looked like.
Wave Function Every wave serves one of two functions: action or reaction.
Undoing the spreading of the wave function is like trying to put spilled milk back in the bottle.
A double-slit optical system was used to test thepossible role of consciousness in the collapse of the quantum wave function.
(Once you make an observation, the wave function“collapses,” leaving a particle in a definite state.).
Vertical installation of the product, the water level to reach the red line on the action,there is a certain anti wave function.
This means that electrons have no volume, but they do have a wave function whose energy occupies the space.
Nor indeed does wave function collapse, which is then just a way of talking about how measurement updates our knowledge.
When you try to measure it(say by peeking into the box), the wave function of possibilities collapses into one state or the other.
We can prepare a wave function so that we know it exactly, but we only learn about the hidden variables by observing them.
But the prospect led McQueen and Chalmers to suggest a boldway of testing whether consciousness indeed causes wave function collapse.
The implication of that is that the wave function has to go to zero, it has to vanish when the helium atoms touch each other.
As the wave function describes only a set of probabilities, how can physicists get a complete picture of its effects in short order?
And when you do find the electron, something even stranger happens:The electron's wave function temporarily stops obeying the Schrödinger equation.
You will get to use Wave Function software for Computational Chemistry that visualizes the structure of complex molecules.
The key point is now this: If the wave function of a particle vibrates along this surface, it will inherit this SU(N) symmetry.
Does the wave function directly correspond to an objective, observer-independent physical reality, or does it simply represent an observer's partial knowledge of it?
It is only when the particle is observed, and the wave function collapses, that the particle is definitively located in one particular place or another.
Since the wave function describes only a set of probabilities, how can physicists get a complete picture of their effects in a short time?
To every possible outcome of an observation, the wave function assigns a number, which we call the amplitude, and which can be positive or negative.
She actually has a wave function describing a superposition of both possibilities, but when we make an observation we always find a definite result.
For example, Li explained, an electron's wave function- the complex mathematical description of its quantum properties- can be entangled with another electron's wave function.