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  1. Computing with cells and atoms in a nutshell.Cristian S. Calude & Gheorghe Păun - 2000 - Complexity 6 (1):38-48.
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  • Computing with cells and atoms in a nutshell.Cristian S. Calude & Gheorghe P.?un - 2000 - Complexity 6 (1):38-48.
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  • Significance of Models of Computation, from Turing Model to Natural Computation.Gordana Dodig-Crnkovic - 2011 - Minds and Machines 21 (2):301-322.
    The increased interactivity and connectivity of computational devices along with the spreading of computational tools and computational thinking across the fields, has changed our understanding of the nature of computing. In the course of this development computing models have been extended from the initial abstract symbol manipulating mechanisms of stand-alone, discrete sequential machines, to the models of natural computing in the physical world, generally concurrent asynchronous processes capable of modelling living systems, their informational structures and dynamics on both symbolic and (...)
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  • Hypercomputation.B. Jack Copeland - 2002 - Minds and Machines 12 (4):461-502.
    A survey of the field of hypercomputation, including discussion of a variety of objections.
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  • The Major Transitions in Evolution.John Maynard Smith & Eörs Szathmáry - 1996 - Journal of the History of Biology 29 (1):151-152.
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  • The complexification of engineering.Carlos E. Maldonado, Gómez Cruz & A. Nelson - 2012 - Complexity 17 (4):8-15.
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  • The Life of The Cosmos. [REVIEW]Steven Weinstein & Arthur Fine - 1998 - Journal of Philosophy 95 (5):264-268.
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  • (1 other version)The interactive nature of computing: Refuting the strong church–turing thesis. [REVIEW]Dina Goldin & Peter Wegner - 2008 - Minds and Machines 18 (1):17-38.
    The classical view of computing positions computation as a closed-box transformation of inputs (rational numbers or finite strings) to outputs. According to the interactive view of computing, computation is an ongoing interactive process rather than a function-based transformation of an input to an output. Specifically, communication with the outside world happens during the computation, not before or after it. This approach radically changes our understanding of what is computation and how it is modeled. The acceptance of interaction as a new (...)
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  • Super turing-machines.B. Jack Copeland - 1998 - Complexity 4 (1):30-32.
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  • Self-Modifying Systems In Biology And Cognitive Science: A New Framework For Dynamics, Information.G. Kampis - forthcoming - And Complexity.
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  • Super Turing-machines.Jack Copeland - 1998 - Complexity 4 (1):30-32.
    The tape is divided into squares, each square bearing a single symbol—'0' or '1', for example. This tape is the machine's general-purpose storage medium: the machine is set in motion with its input inscribed on the tape, output is written onto the tape by the head, and the tape serves as a short-term working memory for the results of intermediate steps of the computation. The program governing the particular computation that the machine is to perform is also stored on the (...)
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