Examples of using The wavefunction in English and their translations into Ukrainian
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The wavefunction itself is evolving at all times over the full multi-particle configuration space.
If one slit has a detector on it, then the wavefunction collapses due to that detection.
What one can know about aparticle at any given time is described by the wavefunction.
Constants a, b, c, d are determined from the wavefunction and continuity condition at and.
In 2013, Dürr et al. suggested that the requiredfoliation could be covariantly determined by the wavefunction.
Unlike de Broglie- Bohm theory,Valentini's theory has the wavefunction evolution also depend on the ontological variables.
For his fundamental research in quantum mechanics,especially for his statistical interpretation of the wavefunction.".
Everett's many-worlds interpretation is an attempt to demonstrate that the wavefunction alone is sufficient to account for all our observations.
It treats the wavefunction as a fundamental object in the theory, as the wavefunction describes how the particles move.
Where θ(t) is a yet undetermined phase,to be fixed by demanding that the wavefunction satisfies the Schrödinger equation.
For instance Schrödinger at firstdid not understand the probabilistic nature of the wavefunction associated to the electron;
In de Broglie- Bohm theory, the wavefunction is defined at both slits, but each particle has a well-defined trajectory that passes through exactly one of the slits.
It is based on three basic postulates andan additional fourth postulate that links the wavefunction to measurement probabilities: 1.
The wavefunctions from this theory did not satisfy the Pauli exclusion principle for which Slater showed that determinantal functions are required.
After we perform the measurement, obtaining some result x, the wavefunction collapses into a position eigenstate centered at x.
The wavefunction itself, and not the particles, determines the dynamical evolution of the system:the particles do not act back onto the wave function.
In their derivation, they derive the velocity field by demanding the appropriate transformation properties given bythe various symmetries that Schrödinger's equation satisfies, once the wavefunction is suitably transformed.
The wavefunction must be a single-valued function of all its coordinates, since the probability density ought to be uniquely determined at each point in space.
While other researchers struggled to depict a brief moment in the life of a molecule using quantum laws, Hawking showed it was possible to encapsulate the entire history of the whole Universe in a single mathematical expression-“The Wavefunction of the Universe”, as he called it.
In Bohm's 1952 papers he used the wavefunction to construct a quantum potential that, when included in Newton's equations, gave the trajectories of the particles streaming through the two slits.
Since the uncertainty relation can be derived from the wavefunction in other interpretations of quantum mechanics, it can be likewise derived(in the epistemic sense mentioned above) on the de Broglie- Bohm theory.
In de Broglie- Bohm theory,the velocities of the particles are given by the wavefunction, which exists in a 3N-dimensional configuration space, where N corresponds to the number of particles in the system; Bohm hypothesized that each particle has a"complex and subtle inner structure" that provides the capacity to react to the information provided by the wavefunction by the quantum potential.