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Titlebook: Learning Electricity and Electronics with Advanced Educational Technology; Michel Caillot Conference proceedings 1993 Springer-Verlag Berl

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f neurophysiological processes underlying cognition and its ontogeny. There are several obvious reasons for this lack of progress. First, neuroscience has largely dealt with the issues of development in the terms of prenatal or early postnatal maturation of anatomical structures and connections, and
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Bruce A. Sherwood,Ruth W. Chabaystle, 1957; 1978). Much earlier, the important view that cortex is subdivided into a patchwork of rather large, functional subdivisions, the cortical areas or fields, had become established (e.g., Brodmann 1909; von Economo, 1929), and other subsequent investigators had demonstrated that some cortic
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Dimitris Psillos,Panagiotis Koumaras study of the optical properties of the ommatidia, and the “wiring diagram” of the first optic ganglion as evaluated by means of histological methods (BRAITENBERG, 1967; TRUJILLO-CENOZ and MELAMED, 1966), lead to the hypothesis that the unfused rhabdoms of the Dipteran eye, combined with the special
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Barbara Y. White,John R. Frederiksen,Kathryn T. Spoehre among the most promising algorithms for solving the protein structure prediction problem. In this chapter, we use this insight to evaluate, and show the limitations of, simplified models for protein structure prediction. These simplified models, e.g., lattice-based models, have been proposed for t
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Jean-Louis Clossetsk for enhancing their computing performance with parallelism obtained by biological implementation. For this purpose, we propose a new molecular computing method, namely, computing with Rho family GTPases, which differs from the Adleman-Lipton paradigm of DNA computing [1,9] and surfaced-based tech
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