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    <title>Computability and Insolvability of Simulation Processes for Anticipatory Behaviour in Evolutionary Systems</title>
    <link>https://popups.uliege.be/3041-539x/index.php?id=3855</link>
    <description>A biophysically tenable description based on the present understanding of evolutionary systems is discussed, which relies on a hierarchical dynamical approach to an evolutionary chain of increasing abstraction levels through compression of information by n-dimensional attractors of chaotic dynamics. The capability of simulating the environment and other evolutionary systems through anticipatory behaviour so attained cannot be described fully through Thermodynamics, while the so-called &quot;Great Puzzle of Theoretical Biology&quot; could be solved through a quantum physical approach. Computability and insolvability problems would be overcome through an energy-free geometrized and topological approach stemming from an analysis of relationships between the logical space and the phase space of an evolutionary system. </description>
    <category domain="https://popups.uliege.be/3041-539x/index.php?id=65">Full text issues</category>
    <category domain="https://popups.uliege.be/3041-539x/index.php?id=102">Volume 29</category>
    <category domain="https://popups.uliege.be/3041-539x/index.php?id=3738">Symposium 7 : Evolution of Life, Autopoiesis, Soci...</category>
    <category domain="https://popups.uliege.be/3041-539x/index.php?id=3739">Dedicated Workshop to "Physics and Logic of Antici...</category>
    <language>fr</language>
    <pubDate>Mon, 30 Sep 2024 14:19:09 +0200</pubDate>
    <lastBuildDate>Mon, 30 Sep 2024 14:19:21 +0200</lastBuildDate>
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