Примери за използване на Schrödinger equation на Английски и техните преводи на Български
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The complete Schrödinger equation has the form.
And in the event of an atomic scale Is that defines the Schrödinger equation.
This is the Schrödinger equation for the free particle.
Is obtained by solving the Schrödinger equation.
This is the Schrödinger equation for a single particle in a potential.
The time evolution of this wave-function is described by the Schrödinger equation.
For them, the Schrödinger equation is written as.
This phenomenon occurs not only for fluids, but also, for instance,in atomic physics(Schrödinger equation).
Of the n-dimensional Schrödinger equation in time.
The Schrödinger equation describes the wave-like behavior of particles in quantum mechanics.
Can be found by solving the Schrödinger equation for the system.
The Schrödinger equation, published in 1926, describes an electron as a wave instead of a point particle.
A proper version of the Schrödinger equation may be used.
The wave function is obtained as a solution of a differential equation known as the Schrödinger equation.
The complete Schrödinger equation has the form.
The quantum transport of energy in proteins, however,is unclear due to challenges for solving the many-body Schrödinger equation.
The exact solution of the Schrödinger equation for more than a few interacting electrons is impossible.
In this monograph, written more than twenty years ago,we based our scattering theory on the wave equation rather than the Schrödinger equation.
The Dirac equation is superficially similar to the Schrödinger equation for a massive free particle.
The Schrödinger equation describes how wavefunctions change in time, playing a role similar to Newton's second law in classical mechanics.
Nevertheless it would appear natural that the possibility of supplementing the Schrödinger equation with hidden variables would have been taken seriously.
The wavefunction of the Schrödinger equation reduces to three equations that when solved, lead to the first three quantum numbers.
Earlier in the same year he created the Schrödinger equation of the relativistic Doppler effect for spectral lines, based on the hypothesis of light quanta and considerations of energy and momentum.
We may say that when the state-vector is α+ or α- respectively, sz is equal to ℏ/2 and -ℏ/2 respectively,but, if one restricts oneself to the Schrödinger equation, sx and sy just do not have values.
She then studied the equations of elasticity, the Schrödinger equation, the linearized Navier- Stokes equations, and Maxwell 's equations. .
The Schrödinger equation, applied to the aforementioned example of the free particle, predicts that the center of a wave packet will move through space at a constant velocity(like a classical particle with no forces acting on it).
For example, as the only neutral atom with an analytic solution to the Schrödinger equation, the study of the energetics and bonding of the hydrogen atom played a key role in the development of quantum mechanics.
He also made fundamental contributions to inverse scattering theory by showing the connection between scattering data and spectral data,thus relating the famous Gelfand- Levitan method to the inverse scattering problem for the Schrödinger equation.
As the only neutral atom for which the Schrödinger equation can be solved analytically, study of the energetics and spectrum of the hydrogen atom has played a key role in the development of quantum mechanics.