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Titlebook: Cellular Cause-Effect Structures; Ludwik Czaja Book 2024 The Editor(s) (if applicable) and The Author(s), under exclusive license to Sprin

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Ganzheitliche Anwendungsentwicklung,cell in each of them has different (. and .—disjoint) neighbourhood. Thus, ., ., . are .. Nonetheless, ., in accordance with the global semantic rule for this task, because any cell ., shared by ., ., ., modifies its value (dead/live, i.e. ./.) the same way, depending only on the number of live neig
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https://doi.org/10.1007/978-3-322-94631-7As a base (ground) for pictorial presentation of cellular c-e structures considered so far, have been taken the infinite planar surface with Cartesian coordinates but with ignored Euclidean magnitudes like distance, angle, area, etc. Hence allowable different scaling of the coordinates.
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Cellular Version of Cause-Effect Structures,The key idea to exploit some concepts from c-e structures in constructing cellular c-e structures is to restrict operations on nodes and on c-e structures to addition (.), thus to neglect multiplication (.), and to apply only parallel semantics, which may be . binary relation between states. Thus, a relation specific to a modelled task.
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Structures on Non-planar Surfaces,As a base (ground) for pictorial presentation of cellular c-e structures considered so far, have been taken the infinite planar surface with Cartesian coordinates but with ignored Euclidean magnitudes like distance, angle, area, etc. Hence allowable different scaling of the coordinates.
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Beyond the 2-Dimensional Bases,There is an essential difference between cellular c-e structures outspread over multi-dimensional and one-dimensional bases (location spaces). In regard to structural, that is geometric features, any cell in a cellular c-e structure on a 2-dimensional base or of higher dimension, may have arbitrary (but equal for all cells) number of neighbours.
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