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Equibalancedistribution (Eqbl) in th...
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Hellwig, Marcus.
Equibalancedistribution (Eqbl) in the analysis of earthquake data = Influence of the risk of low magnitudes on spontaneous violent earthquakes /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Equibalancedistribution (Eqbl) in the analysis of earthquake data/ by Marcus Hellwig.
其他題名:
Influence of the risk of low magnitudes on spontaneous violent earthquakes /
作者:
Hellwig, Marcus.
面頁冊數:
XI, 77 p. 85 illus., 69 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Earth System Sciences. -
電子資源:
https://doi.org/10.1007/978-3-658-29859-3
ISBN:
9783658298593
Equibalancedistribution (Eqbl) in the analysis of earthquake data = Influence of the risk of low magnitudes on spontaneous violent earthquakes /
Hellwig, Marcus.
Equibalancedistribution (Eqbl) in the analysis of earthquake data
Influence of the risk of low magnitudes on spontaneous violent earthquakes /[electronic resource] :by Marcus Hellwig. - 1st ed. 2020. - XI, 77 p. 85 illus., 69 illus. in color.online resource.
Entrance -- Limits of symmetric variance -- Association with asymmetry and steepness (kurtosis) -- Presentation of the logarithmic equal distribution, Eqbl -- Properties of Eqb -- Use of the Eqbl for the analysis of earthquakedata -- Approximation to the location parameters modal, mean, median; Introduction of the sine derivative -- Final Statement -- Summary.
The book describes the assessment of the risk and probability of occurrence of damage according to the Richter scale. It explains the connection of the probability theory of extreme processes with examples from the sciences of earthquake observation. In contrast to many views, the present analysis takes into account the complete population of all measurement data of the magnitudes from 0 to the measured maximum Contents: Entrance Limits of symmetric variance Association with asymmetry and steepness (kurtosis) Presentation of the logarithmic equal distribution, Eqbl Properties of Eqb Use of the Eqbl for the analysis of earthquakedata Approximation to the location parameters modal, mean, median; Introduction of the sine derivative Final Statement Summary Target Groups: Engineers who are concerned with earthquake-resistant building concepts Geological institutes dealing with earthquakes and their dynamic effects Students of architecture, housing and urban planning Author: Marcus Hellwig currently works as QualityEngineer, He`s member of SCEC Community, Southern California Earthquake Center. Marcus does research in Statistics, Probability Theory and Telecommunications Engineering. His current project is 'New Probability Density Functions Equibalance Distributions Eqb & Eqbl' - also for the evaluation of i.a. Earthquake events.
ISBN: 9783658298593
Standard No.: 10.1007/978-3-658-29859-3doiSubjects--Topical Terms:
882734
Earth System Sciences.
LC Class. No.: GB3-5030
Dewey Class. No.: 550
Equibalancedistribution (Eqbl) in the analysis of earthquake data = Influence of the risk of low magnitudes on spontaneous violent earthquakes /
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Entrance -- Limits of symmetric variance -- Association with asymmetry and steepness (kurtosis) -- Presentation of the logarithmic equal distribution, Eqbl -- Properties of Eqb -- Use of the Eqbl for the analysis of earthquakedata -- Approximation to the location parameters modal, mean, median; Introduction of the sine derivative -- Final Statement -- Summary.
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The book describes the assessment of the risk and probability of occurrence of damage according to the Richter scale. It explains the connection of the probability theory of extreme processes with examples from the sciences of earthquake observation. In contrast to many views, the present analysis takes into account the complete population of all measurement data of the magnitudes from 0 to the measured maximum Contents: Entrance Limits of symmetric variance Association with asymmetry and steepness (kurtosis) Presentation of the logarithmic equal distribution, Eqbl Properties of Eqb Use of the Eqbl for the analysis of earthquakedata Approximation to the location parameters modal, mean, median; Introduction of the sine derivative Final Statement Summary Target Groups: Engineers who are concerned with earthquake-resistant building concepts Geological institutes dealing with earthquakes and their dynamic effects Students of architecture, housing and urban planning Author: Marcus Hellwig currently works as QualityEngineer, He`s member of SCEC Community, Southern California Earthquake Center. Marcus does research in Statistics, Probability Theory and Telecommunications Engineering. His current project is 'New Probability Density Functions Equibalance Distributions Eqb & Eqbl' - also for the evaluation of i.a. Earthquake events.
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