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Titlebook: Rain Formation in Warm Clouds; General Systems Theo A. M. Selvam Book 2015 (c)The Author(s) 2015 2015 Fractals.General Systems Research.Gen

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2199-9112 recipitation.Includes supplementary material: .This book aims to promote the understanding of some of the basic mathematical and scientific issues in the subjects relating to climate dynamics, chaos and quantum mechanics. It is based on substantial research work in atmospheric science carried out ov
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Cumulus Cloud Model,del-predicted cloud parameters are in agreement with reported observations, in particular, the cloud drop-size distribution. Rain formation can occur in warm clouds within a 30-min lifetime under favourable conditions of moisture supply in the environment.
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General Systems Theory Concepts in Atmospheric Flows,y to the global cloud cover pattern concomitant with inverse power law form for spectra of temporal fluctuations. Such nonlocal connections are ubiquitous to dynamical systems in nature and are identified as signatures of self-organized criticality. Mathematical models for simulation and prediction
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Universal Spectrum for Atmospheric Suspended Particulates: Comparison with Observations: Data Set I power spectra of meteorological parameters such as wind, temperature, etc., and thus implies long‐range correlations, identified as self‐organized criticality generic to dynamical systems in nature. A general systems theory based on classical statistical physical concepts discussed in Chaps. 1 and
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Universal Spectrum for Atmospheric Suspended Particulates: Comparison with Observations, Data Set Iwer law form for power spectra of meteorological parameters such as windspeed, temperature, rainfall, etc. Inverse power law form for power spectra indicates long-range space-time correlations or nonlocal connections and is a signature of self-organiszed criticality generic to dynamical systems in n
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