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    Reversible Computation: Extending Horizons of Computing: Selected Results of the COST Action IC1405

    Reversible Computation: Extending Horizons of Computing: Selected Results of the COST Action IC1405

    Irek Ulidowski(editor)Ivan Lanese(editor)Ulrik Pagh Schultz(editor)Carla Ferreira(editor)

    This open access State-of-the-Art Survey presents the main recent scientific outcomes in the area of reversible computation, focusing on those that have emerged during COST Action IC1405 "Reversible Computation - Extending Horizons of Computing", a European research network that operated from May 2015 to April 2019. Reversible computation is a new paradigm that extends the traditional forwards-only mode of computation with the ability to execute in reverse, so that computation can run backwards as easily and naturally as forwards. It aims to deliver novel computing devices and software, and to enhance existing systems by equipping them with reversibility. There are many potential applications of reversible computation, including languages and software tools for reliable and recovery-oriented distributed systems and revolutionary reversible logic gates and circuits, but they can only be realized and have lasting effect if conceptual and firm theoretical foundations are established first.This open access State-of-the-Art Survey presents the main recent scientific outcomes in the area of reversible computation, focusing on those that have emerged during COST Action IC1405 "Reversible Computation - Extending Horizons of Computing", a European research network that operated from May 2015 to April 2019. Reversible computation is a new paradigm that extends the traditional forwards-only mode of computation with the ability to execute in reverse, so that computation can run backwards as easily and naturally as forwards. It aims to deliver novel computing devices and software, and to enhance existing systems by equipping them with reversibility. There are many potential applications of reversible computation, including languages and software tools for reliable and recovery-oriented distributed systems and revolutionary reversible logic gates and circuits, but they can only be realized and have lasting effect if conceptual and firm theoretical foundations are established first.

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    description_of_book

    This open access State-of-the-Art Survey presents the main recent scientific outcomes in the area of reversible computation, focusing on those that have emerged during COST Action IC1405 "Reversible C

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    تاريخ الإصدار

    25 يونيو 2020

    المؤلفين
    Irek Ulidowski(editor)Ivan Lanese(editor)Ulrik Pagh Schultz(editor)Carla Ferreira(editor)

    ردمك -الرقم الدولي المعياري للكتب-

    978-3-030-47361-7

    عن المؤلفين:

    Irek Ulidowski(editor)
    Irek Ulidowski(editor)

    Associate Professor in Computer Science G12 Informatics Building Department of Informatics, University of Leicester, University Road, Leicester, LE1 7RH.

      Irek Ulidowski(editor)
      Ivan Lanese(editor)
      Ivan Lanese(editor)

      Associate Professor in Computer Science University of Bologna/INRIA, Italy

      Ivan Lanese(editor)
      Ulrik Pagh Schultz(editor)
      Ulrik Pagh Schultz(editor)

      Associate Professor, The Maersk Mc-Kinney Moller Institute Associate Professor, SDU UAS Centre

      Ulrik Pagh Schultz(editor)
      Carla Ferreira(editor)
      Carla Ferreira(editor)

      I am an Associate Professor at Departamento de Informática of the Universidade Nova de Lisboa, and a researcher at Research Center NOVA Laboratory for Computer Science and Informatics (NOVA LINCS) in the research stream Software Systems. I started my academic career as an Assistant at Universidade do Minho. After that, I joined the Dependable Systems & Software Engineering Group (DSSE) of the University of Southampton, first as a PhD student and later as a research fellow. After returning to Portugal in 2003, I was an Assistant Professor at IST.

      Carla Ferreira(editor)

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