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Titlebook: Applications of Fractals and Chaos; The Shape of Things A. J. Crilly,Rae A. Earnshaw (Head of Computer Gra Conference proceedings 1993 Spri

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發(fā)表于 2025-3-21 16:54:09 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Applications of Fractals and Chaos
期刊簡(jiǎn)稱The Shape of Things
影響因子2023A. J. Crilly,Rae A. Earnshaw (Head of Computer Gra
視頻videohttp://file.papertrans.cn/160/159436/159436.mp4
圖書(shū)封面Titlebook: Applications of Fractals and Chaos; The Shape of Things A. J. Crilly,Rae A. Earnshaw (Head of Computer Gra Conference proceedings 1993 Spri
影響因子Applications of Fractals and Chaos presents new developmentsin this rapidlydeveloping subject area. The presentation ismore than merely theoretical,it specifically presentsparticular applications in a wide range of applicationsareas. Under the oceans, we consider the ways in whichsponges and corals grow; we look, too, at the stability ofshipson their surfaces. Land itself is modelled andapplications to art, medicineand camouflage are presented.Readers should find general interest in the range of areasconsidered and should also be able to discover methods ofvalue for their own specific areas of interest fromstudying the structure of related activities.
Pindex Conference proceedings 1993
The information of publication is updating

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Positive Wavelet Representation of Fractal Signals and Imagesl structure of measured and simulated turbulence are illustrated. The method extends in a straightforward manner to two dimensions. An application which demonstrates the multiple-scale feature-based representation of a two-dimensional image is presented.
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Application of Fractal Geometry to Geological Site Characterizatione AFFINITY is applied to measured field data to generate fractal transmissivity fields that have the correct dimension and interpolate the field data. AFFINITY is also used to compute flow and tracer transport through the fractal transmissivity fields. These computations exhibit channelling and disp
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A. J. Crilly,Rae A. Earnshaw (Head of Computer Gra
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retical,it specifically presentsparticular applications in a wide range of applicationsareas. Under the oceans, we consider the ways in whichsponges and corals grow; we look, too, at the stability ofshipson their surfaces. Land itself is modelled andapplications to art, medicineand camouflage are pr
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https://doi.org/10.1007/978-3-540-48996-2 erosion of these basins implies a loss of engineering integrity of the system, which can often happen at a wave height that is considerably smaller than that predicted by a steady state analysis. The analysis can be used to investigate the transient behaviour of a ship and can lead to guidelines which can be incorporated in ship hull design.
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https://doi.org/10.1007/978-3-540-48996-2 is arising by virtue of our appreciation of complexity. This paradigm sees computation as a process of managing complexity rather than one of simplifying it The implications of this for design applications are examined.
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