Examples of using Wave function in English and their translations into German
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Political
It obeys, or is spread out, like a wave function.
One can have a wave function that is very strongly peaked in a small region.
Instead, they are represented by what is called a wave function.
If one knew the wave function at one time, one could calculate it at any other time.
To provide you with a realistic camp fire feeling, the Classic Bell 3is fitted with the Premium Fire with Eco Wave function.
Its properties are operators on the wave function, which is the so-called first quantization.
Wave function splits, here we encounter Schrodinger's cat, an animal both alive and dead at the same time.
Instead of being able to predict the positions and speeds of particles,all we can predict is the wave function.
The rate, at which the wave function varies from point to point, gives the speed of the particle.
Physics: Quantum physics together with their wave consideration is building the base for a understanding of energy and wave function.
The wave function contains all that one can know of the particle, both its position, and its speed.
The research team from Jülich, Graz,and Berlin was thus able observe the wave function, which according to the rules of quantum mechanics is in fact considered unobservable.
But the wave function will vary very rapidly near the peak, up on one side, and down on the other.
On this trip through the Universe in its entirety, you will encounter exciting things like dark energy, dark matter,the Big Bang and the wave function of the Universe.
The true wave function is the sum of the dead cat wave function and the living cat wave function.
The other fact is that in the ground state--the lowest energy state of a quantum system-- the wave function is always very smooth; it has the minimum number of wiggles.
The electron's wave function of this sort of electron source is predetermined by the chemical properties of the molecule.
This branching is instantaneous and happens continuously whenever the decoherenceeffects described above cause irreversible changes in the wave function 16.
In the formation of DNA replica dominant wave function takes on the, probably, the emitter, with the same wavelength wavelength absorption of DNA.
So he sat down-- and I imagine he had nothing more than a simple piece of paper and a pencil-- and he tried to write down, and did write down, thesimplest function that he could think of which had the boundary conditions that the wave function vanish when things touch and is smooth in between.
In quantum parlance, the wave functions become"entangled"- a special kind of correlation that preserves connectedness even over huge distances.
Hugh Everette and John Wheeler in their ManyWorld Theory have suggested that all the possibilities which the wave function of Schroedinger's equation presents are real, and they all happen.
The wave function of each of these electronic stationary states is a standing wave, with a nodal pattern that reflects the quantum numbers of the state.
Scientists might talk about quantum mechanics, about wave function collapse, about hidden variables, about consciousness of the observer.
The wave function itself is not directly measurable, although strategies can be devised whereby multiple measurements performed on a quantum system lead to a complete characterization of the wave function.
In this paper we describe measurements for determining the spatial extent of charge carrier wave functions in small organic molecules and conjugated polymers which can be used as absorber materials in organic solar cells.
The amplitude of each peak in a wave function denotes the probability of a particle being found in any specific circumstances- for instance, at point A or B, as shown.
To avoid computing integrals on runtime Density Functional Tight Binding(DFTB)uses optimized wave function and electron densities for each atom and tabulates neccessary integrals pair-wise for several distances.
According to the Copenhagen interpretation, the wave function describes the probability of observing the outcome of measurements that are performed on a quantum mechanical system, such as measurements of the energy of the system or the position or momenta of its constituents.
After successful participation, students are able to: 1. understand the implications of Schrödinger's equation andhow to describe states with wave functions 2. solve Schrödinger's equation for one-dimensional problems and interpret the solution 3. apply the bra-ket formalism 4. solve the hydrogen atom and other basic problem in three-dimensions 5. explain the concept of spin and the Stern Gerlach experiment6. solve problems that involve two quantum states7. solve problems using approximate methods8. understand the concept of density matrices and quantum entanglement.