Examples of using Wavefunction in English and their translations into Greek
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Electron's spin and antisymmetric wavefunctions.
The wavefunction is a solution of the Schrödinger equation.
Collapse the universe's wavefunction to one in which you.
The wavefunction is the solution to the Schrödinger equation.
The illustration shows the square of the absolute value of the wavefunctions.
As a practical consequence of mixing in diatomic molecules, the wavefunctions s+s and pz+pz molecular orbitals become blended.
Apart from their isospin, the two nucleons also have spin andspatial distributions of their wavefunction.
The wavefunction of the Schrödinger wave equation reduces to three equations that when solved, lead to the first three quantum numbers.
Conversely, if the diagonal quantities A(x, x) are zero in every basis,then the wavefunction component.
The wavefunctions would prove to be a provisional or incomplete description of the quantum mechanical part, of which an objective account would become possible.
For his fundamental research in quantum mechanics,especially for his statistical interpretation of the wavefunction".
He held that the correct interpretation of the wavefunction was that the square at a given point in space was proportional to the probability of finding that point in space.
United Kingdom"for his fundamental research in quantum mechanics,especially for his statistical interpretation of the wavefunction"[49].
They say that the mathematics leaves no doubt that the wavefunction is not just a statistical tool, but rather, a real, objective state of a quantum system….
Another variation- the Many-Worlds interpretation- has also been offered as a possible resolution for the wavefunction of subatomic particles.
The ability to perform direct measurement of the quantum wavefunction has important future implications for quantum information science,” says Robert Boyd, of both Rochester and Ottawa.
And yet the Many Worlds Interpretation says those versions of the universe really exist within the quantum wavefunction.
The theorem proposed by Barrett shows that theories that treat the wavefunction in terms of lack of knowledge of a system's physical state will also fail to reproduce those predictions.
A double-slit optical system tests the possible role of consciousness in the collapse of the quantum wavefunction.
In this case, the exchange of the two nucleons will multiply the deuterium wavefunction by(- 1) from isospin exchange,(+1) from spin exchange and(+1) from parity(location exchange), for a total of(- 1) as needed for antisymmetry.
A double-slit optical system was used to test the possible role of consciousness in the collapse of the quantum wavefunction.
According to the MWI, there is, was andalways will be only one wavefunction, and only decoherence calculations, not postulates, can tell us when it is a good approximation to treat two terms as non-interacting.".
The quantum numbers describing the system, which are constant over time, are now j and mj,defined through the action of J on the wavefunction ψ.
In addition to the Schrödinger equation, Bohm posited a guidance equation that determines,on the basis of the system's wavefunction and particles' initial positions and velocities, what their future positions and velocities should be.
Essentially, it states that all possible outcomes in quantum mechanics exist in alternate universes, andthere really is no such thing as“wavefunction collapse'.
The abstract quantum world described by this evolving wavefunction contains within it a vast number of classical parallel storylines(worlds), continuously splitting and merging, as well as a number of quantum phenomena that lack a classical description.
With the development of mechanics in the beginning of the 20th century came the concept that mathematical operations could be performed on an entire particle wavefunction.
At absolute zero all atoms are in their vibrational ground state andshow zero point quantum mechanical motion, so that the wavefunction of a single vibrational mode is not a sharp peak, but an exponential of finite width(the wavefunction for n= 0 depicted in the article on the quantum harmonic oscillator).
Quantum mechanics specifies the state of the Universe not in classical terms, such as the positions and velocities of all particles, butin terms of a mathematical object called a wavefunction.
The direct measurement technique was first developed in 2011 by scientists at the National Research Council, Canada, to measure the wavefunction- a way of determining the state of a quantum system.