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Übersetzung für 'Rayleigh distribution' von Englisch nach Deutsch
 electr.engin.math. Rayleigh distribution Rayleigh-Verteilung {f} Teiltreffer optics Rayleigh scattering Luftstreuung {f} geol. Rayleigh waves Rayleigh-Wellen {pl} materialphys. Rayleigh damping Rayleigh-Dämpfung {n} phys. Rayleigh equation Rayleigh-Gleichung {f} phys. Rayleigh wave Rayleigh-Welle {f} [auch: Rayleighwelle] phys. Rayleigh-Jeans law Rayleigh-Jeans Gesetz {n} phys.unit Rayleigh number  Rayleigh-Zahl {f}  Rayleigh scattering  Rayleigh-Streuung {f}  Rayleigh-Bénard cell Rayleigh-Bénard-Zelle {f} phys. Plateau-Rayleigh instability Plateau-Rayleigh-Instabilität {f} Rayleigh scatter  Rayleigh-Streuung {f}  telecom. Rayleigh fading channel Rayleigh-Fadingkanal {m} phys. Rayleigh-Taylor instability  Rayleigh-Taylor-Instabilität {f}  distribution Auslieferung {f} 236 econ. distribution Vertrieb {m} 2531 comm. distribution Vertreibung {f} [selten für Vertrieb] 11 spec. distribution Distribution {f} 55 distribution Aufteilung {f} 290 distribution Zuweisung {f} 61 distribution Austeilung {f} 29
21 Übersetzungen
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Anwendungsbeispiele Englisch
• The Weibull factor is often close to 2 and therefore a Rayleigh distribution can be used as a less accurate, but simpler model.
• The asymptotic function for a two-dimensional random walk as the number of steps increases is given by a Rayleigh distribution.
• In probability theory and statistics, the noncentral chi distribution is a noncentral generalization of the chi distribution. It is also known as the generalized Rayleigh distribution.
• Rayleigh fading models assume that the magnitude of a signal that has passed through such a transmission medium (also called a communication channel) will vary randomly, or fade, according to a Rayleigh distribution — the radial component of the sum of two uncorrelated Gaussian random variables.
• In the case of phase interference fading, the time distribution of the instantaneous field strength usually approximates a Rayleigh distribution when several signal components of equal amplitude are present.

• Some research confirms that observed wave height distribution in general follows well the Rayleigh distribution, but in shallow waters during high energy events, extremely high waves are rarer than this particular model predicts.
• From the Rayleigh distribution of wind speed at the site of the building, it is possible to estimate the number of hours in a year during which the wind speed at a height of 10.0 m exceeds 7.83 m/s (estimated from the wind speed of 5.7 m/s at ridge height of 8.0 m).
• Normal distribution, Cauchy distribution, Logistic distribution, Error distribution, Power distribution, Rayleigh distribution.
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