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Titlebook: Extended Abstracts Spring 2013; Complex Systems; Con Álvaro Corral,Anna Deluca,Francesco Massucci Conference proceedings 2014 Springer Inte

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Mucosal Immunity Against Anthrax[2, 7]. It consists in a sudden elongation of the DNA chain of about 70 . more than the native length (B-DNA), when a force around 70 pN is applied. Three main mechanisms have been proposed to explain this transition. Two of them involve breaking of the bonds that hold the two strands together: peel
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https://doi.org/10.1007/978-1-4615-8855-9 of word frequencies in a text follows a power law with exponent . ∼ 2. At least in a qualitative sense, the fulfillment of Zipf’s law is astonishing, being valid no matter the author, style, or language [4–6]. An important problem of Zipf’s law is the variation of the exponent . among different sam
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https://doi.org/10.1007/978-3-030-34013-1orks, rather than those defined by phenomenological differential equations [1, 8]. Within this approach the nodes of a network are usually considered as individuals, who are connected with each other by vertices corresponding to social links. Although some authors use continuous time simulations (se
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Defining Immunity-Based Systems,ts of modelling at different scales and the relation between these models, the study is supposed to allow the prediction of the time profile of the total population size within an admissible tolerance.
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Methods in Pharmacology and Toxicology Such complexity is a consequence of the fact that the phenotype emerges from networks of interactions between genes and their products, which regulate gene expression and give rise to non-linear, high-dimensional dynamical systems. In addition, these gene regulatory networks (GRNs) are shaped by ev
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