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Nodes in industrial wireless mesh networks typically have low power battery, low memory; moreover, the routing tables of these nodes expand with the network length, and the nodes have no diffusion communication support[20, 21].
The H-function, which is an extension of the hypergeometric functions (_{p}F_{q}), introduced by Fox [3] (see also [4, 5]), has found various applications in a huge range of problems associated with reaction, reaction diffusion, communication, engineering, fractional differential equations, integral equations, theoretical physics, and statistical distribution theory as well.
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Since the 1970s, industrialized countries have enhanced the knowledge base of their economies, by the new techno-economic paradigm, based on the diffusion of communication and information technologies (Harvey 1992).
More specifically, randomness in agent behavior has been modeled as a new topic exogenously inserted in agents' state during a simulation: This event wishes to represent the typical "unsought encounter" of serendipity and modifies an agent's criterion of choice of the peers in knowledge diffusion and communication.
A pilot tested the survey.> Friendship networks explore passive information diffusion, while communication networks have a more instrumental nature (e.g. asking explicitly for help on a certain topic) (Ibarra and Andrews 1993; Katz et al. 2004).
Specifically, we show how the CO-diffusion-mediated communication between these facets may modify voltammograms observed by using CO stripping voltammetry.
In this paper, we present a deterministic system-theoretic molecular communication diffusion model that incorporates the physical/biochemical kinetics of the interfacing units between communicating nanomachines.
This paper provides results on an investigation concerning the application of five tailored Stop-and-Wait Automatic Repeat reQuest (SW-ARQ) schemes to a diffusion based molecular communication system.
Her research has integrated analysis of social and economic interactions within the study of networks and spans many dimensions of these areas, including the analysis of learning and communication, diffusion and information propagation, influence in social networks, and cascades and systemic risk in economic and financial systems.
Under diffusion, an early communication of the innovation is understood (i.e. in the model of Rogers (1995)) followed by the physical diffusion of innovation in the market.
Besides, the openness of the Argentine economy occurred just in a moment of increasing globalization and diffusion of new communication and information technologies, inducing firms to adopt state-of-the-art production technologies.
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