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Titlebook: Unconventional Programming Paradigms; International Worksh Jean-Pierre Banâtre,Pascal Fradet,Olivier Michel Conference proceedings 2005 Spr

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From Quantum Physics to Programming Languages: A Process Algebraic Approachum physics, i.e. the laws of the ultimate knowledge that we have, today, of the foreign world of elementary particles, as described by quantum mechanics. After an introduction to the principles of quantum information processing and a brief survey of the major breakthroughs brought by the first ten y
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Chemical Computingad to a new unifying paradigm coping with the rapidly increasing complexity and autonomy of computational systems. Chemical computing refers to computing with real molecules as well as to programming electronic devices using principles taken from chemistry. The paper focuses on the latter, called ar
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Relational Growth Grammars – A Graph Rewriting Approach to Dynamical Systems with a Dynamical Structspecification of dynamical processes on dynamical structures, parti cular ly in biological and chemical applications. RGG were embedded in the language XL, combining rule-based and conventional object-oriented con structions. Key features of RGG and of the software GroIMP (Growth grammar related Int
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A New Programming Paradigm Inspired by Artificial Chemistriesns in a predefined sequential order, execution will be in random order in analogy to chemical reactions happening between substances. It turns out that such a model of program execution is able to achieve desirable goals if augmented by an automatic program searching method like Genetic Programming.
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Introduction to Amorphous Computing locally interacting computing elements (agents). We anticipate that in order to keep such massively distributed systems cheap, the elements must be bulk manufactured. Therefore, we use a conservative model in which the agents run asynchronously, are interconnected in unknown and possibly time-varyi
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