measurement of azimuths - ترجمة إلى الروسية
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measurement of azimuths - ترجمة إلى الروسية

IN QUANTUM MECHANICS, THE PROBLEM OF HOW OR WHETHER WAVE FUNCTION COLLAPSE OCCURS DURING MEASUREMENT
Measurement (quantum mechanics); Quantum measurement problem; Problem of measurement

measurement of azimuths      

общая лексика

вычисление азимутов

interval of uncertainty         
PARAMETER CHARACTERIZING THE DISPERSION OF QUANTITY VALUES OF A MEASURAND
Measurement Uncertainty; Measuring uncertainty; Uncertainty of measurement; Type B evaluation of uncertainty; Type A evaluation of uncertainty; Interval of uncertainty; Measurement uncertainties
интервал неуверенности.
measurement uncertainty         
PARAMETER CHARACTERIZING THE DISPERSION OF QUANTITY VALUES OF A MEASURAND
Measurement Uncertainty; Measuring uncertainty; Uncertainty of measurement; Type B evaluation of uncertainty; Type A evaluation of uncertainty; Interval of uncertainty; Measurement uncertainties

общая лексика

погрешность измерения

تعريف

грип
ГРИП, ГРИПП, гриппа, ·муж. (·франц. grippe) (мед.). Инфекционная болезнь - катарральное воспаление дыхательных путей, сопровождаемое лихорадочным состоянием; то же, что инфлуэнца
.

ويكيبيديا

Measurement problem

In quantum mechanics, the measurement problem is the problem of how, or whether, wave function collapse occurs. The inability to observe such a collapse directly has given rise to different interpretations of quantum mechanics and poses a key set of questions that each interpretation must answer.

The wave function in quantum mechanics evolves deterministically according to the Schrödinger equation as a linear superposition of different states. However, actual measurements always find the physical system in a definite state. Any future evolution of the wave function is based on the state the system was discovered to be in when the measurement was made, meaning that the measurement "did something" to the system that is not obviously a consequence of Schrödinger evolution. The measurement problem is describing what that "something" is, how a superposition of many possible values becomes a single measured value.

To express matters differently (paraphrasing Steven Weinberg), the Schrödinger wave equation determines the wave function at any later time. If observers and their measuring apparatus are themselves described by a deterministic wave function, why can we not predict precise results for measurements, but only probabilities? As a general question: How can one establish a correspondence between quantum reality and classical reality?

What is the الروسية for measurement of azimuths? Translation of &#39measurement of azimuths&#39 to ا