quantized value - definição. O que é quantized value. Significado, conceito
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O que (quem) é quantized value - definição

QUANTIZED FLUX CIRCULATION OF SOME PHYSICAL QUANTITY
Quantized Vortices; Quantized vortices; Quantized vortex; Quantum vortices
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Value (economics)         
  • Value or price
MEASURE OF THE BENEFIT PROVIDED BY A GOOD OR SERVICE TO AN ECONOMIC AGENT
Monetary value; Value for money; Economic value; Theory of value(economics); Financial value
In economics, economic value is a measure of the benefit provided by a good or service to an economic agent. It is generally measured through units of currency, and the interpretation is therefore "what is the maximum amount of money a specific actor is willing and able to pay for the good or service"?
Sentinel value         
IN-BAND DATA VALUE THAT MUST BE HANDLED SPECIALLY BY COMPUTER CODE
Flag value; Signal value; Sentinel value (programming); Rogue value; Sentinel value loop
In computer programming, a sentinel value (also referred to as a flag value, trip value, rogue value, signal value, or dummy data)
value added         
IN ECONOMICS
Value-add; Value-added; Value added good; Value add; Added cost; Value added ratio; Value-Added; Value-adding; Add value; VALUE ADDED ACTIVITY; Value added product; Value-added product
¦ noun Economics
1. the amount by which the value of an article is increased at each stage of its production, exclusive of initial costs.
2. the addition of features to a basic line or model for which the buyer is prepared to pay extra.

Wikipédia

Quantum vortex

In physics, a quantum vortex represents a quantized flux circulation of some physical quantity. In most cases, quantum vortices are a type of topological defect exhibited in superfluids and superconductors. The existence of quantum vortices was first predicted by Lars Onsager in 1949 in connection with superfluid helium. Onsager reasoned that quantisation of vorticity is a direct consequence of the existence of a superfluid order parameter as a spatially continuous wavefunction. Onsager also pointed out that quantum vortices describe the circulation of superfluid and conjectured that their excitations are responsible for superfluid phase transitions. These ideas of Onsager were further developed by Richard Feynman in 1955 and in 1957 were applied to describe the magnetic phase diagram of type-II superconductors by Alexei Alexeyevich Abrikosov. In 1935 Fritz London published a very closely related work on magnetic flux quantization in superconductors. London's fluxoid can also be viewed as a quantum vortex.

Quantum vortices are observed experimentally in type-II superconductors (the Abrikosov vortex), liquid helium, and atomic gases (see Bose–Einstein condensate), as well as in photon fields (optical vortex) and exciton-polariton superfluids.

In a superfluid, a quantum vortex "carries" quantized orbital angular momentum, thus allowing the superfluid to rotate; in a superconductor, the vortex carries quantized magnetic flux.

The term "quantum vortex" is also used in the study of few body problems. Under the De Broglie–Bohm theory, it is possible to derive a "velocity field" from the wave function. In this context, quantum vortices are zeros on the wave function, around which this velocity field has a solenoidal shape, similar to that of irrotational vortex on potential flows of traditional fluid dynamics.