鸣叫 发表于 2025-3-23 12:24:31
0302-9743 gada, Portugal, in September 2009. The 18 revised full papers presented together with 8 invited talks, 3 tutorials and 5 posters were carefully reviewed and selected from 40 submissions. The papers are devoted to all aspects of unconventional computation ranging from theoretical and experimental aspcoagulate 发表于 2025-3-23 16:30:58
0302-9743 nd dynamical system-based computing; and various proposals for computational mechanisms that go beyond the Turing model.978-3-642-03744-3978-3-642-03745-0Series ISSN 0302-9743 Series E-ISSN 1611-3349软弱 发表于 2025-3-23 18:41:57
Brain Dynamics Promotes Functionmical regimes that a number of authors are willing to label as chaos. The key question is: what may we be missing computation-wise if we overlook brain dynamics? At this point in brain research, we are happy if we can at least provide a partial answer.Pepsin 发表于 2025-3-23 23:39:09
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Using Physical Experiments as Oracleshimself gave a mythological name to an external source of information for a computer - an oracle. We shall consider how a physical experiment can be used to function as an oracle for a computer - a physical oracle. Thought experiments can be constructed using various physical theories, and we will eHemiplegia 发表于 2025-3-24 10:45:35
A Tutorial on Analog Computation: Computing Functions over the Reals James Thomson in 1876, and was constructed in 1932 at MIT under the supervision of Vannevar Bush. The MIT differential analyser used wheel-and-disk mechanical integrators and was able to solve sixth-order differential equations. During the 1930’s, more powerful differential analysers were built. Inprosperity 发表于 2025-3-24 15:53:18
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Brain Dynamics Promotes Functionor or mental states. Computational scientists have new opportunities to receive ’algorithmic’ inspiration from brain processes and propose computational paradigms. Thus a tradition which dates back to the 1940s with neural nets research is renewed. Real processes in the brain are ’complex’ and withs