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Bøger af Marian Gheorghe

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  • - 11th International Conference, CMC 2010, Jena, Germany, August 24-27, 2010. Revised Selected Papers
    af Marian Gheorghe
    592,95 kr.

    This book constitutes the thoroughly refereed post-conference proceedings of the 11th International Conference on Membrane Computing, CMC11, held in Jena, Germany, in August 2010 - continuing the fruitful tradition of 10 previous editions of the International Workshop on Membrane Computing (WMC).The 23 revised full papers presented together with 4 invited papers and the abstracts of 2 keynote lectures were carefully reviewed and selected from numerous submissions. The papers address in this volume cover all the main directions of research in membrane computing, ranging from theoretical topics in the mathematics and computer science to application issues. A special attention was paid to the interaction of membrane computing with biology and computer science, focusing both on the biological roots of membrane computing, on applications of membrane computing in biology and medicine, and on possible electronically based and bioinspired implementations.

  • af Thomas Hinze, Gexiang Zhang, Marian Gheorghe, mfl.
    1.477,95 kr.

  • af Arto Salomaa, Gheorghe Paun, Grzegorz Rozenberg, mfl.
    577,95 - 587,95 kr.

  • af Gexiang Zhang & Marian Gheorghe
    1.387,95 - 1.455,95 kr.

  • - Unconventional Approaches
    af Marian Gheorghe
    1.018,95 kr.

    With the increasing complexity of software systems and their widespread growth into many aspects of our lives, the need to search for new models, paradigms, and ultimately, technologies, to manage this problem is evident. The way nature solves various problems through processes evolving during billions of years was always an inspiration to many computational paradigms; on the other hand, the complexity of the problems posed by the investigation of biological systems challenged the research of new tractable models. Molecular Computational Models: Unconventional Approaches is looking into new computational paradigms from both a theoretical perspective which offers a solid foundation of the models developed, as well as from a modeling angle, in order to reveal their effectiveness in modeling and simulating, especially biological systems. Tools and programming concepts and implementation issues are also discussed in the context of some experiments and comparative studies.

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