4 research outputs found

    Predicciones gráficas de área para la aviación

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    Identifying institutional vulnerability: the importance of language, and system boundaries

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    Taking the idea that institutional reproduction is not obvious and that institutions are vulnerable has significant conceptual implications. Institutional vulnerability can arise through communication between actors in a common language. To apprehend this requires an elaboration of John Searle's (1995, 2005) argument that language is the fundamental institution. Ontologically, language delineates and circumscribes a community. A community cannot function without a common language, and language at the same time constitutes a community's boundaries, allowing for focused and effective communication within a community. Communication through language introduces ambiguity as well, however, and so institutional reproduction, mediated by language, is a deeply contentious process. Communication across boundaries may particularly "irritate" a system, as Niklas Luhmann has argued. How can institutions then be re-identified through change? Searle's general form for institutions is in need of elaboration. We develop arguments by drawing upon Luhmann's (1995) systems analysis and notion of communication

    Search for new resonances decaying to a WW or ZZ boson and a Higgs boson in the +bbˉ\ell^+ \ell^- b\bar b, νbbˉ\ell \nu b\bar b, and ννˉbbˉ\nu\bar{\nu} b\bar b channels with pppp collisions at s=13\sqrt s = 13 TeV with the ATLAS detector

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    See paper for full list of authors, 18 pages (plus author list + cover pages: 36 pages total), 13 figures, 1 table. Submitted to PLB. All figures including auxiliary figures are available at https://atlas.web.cern.ch/Atlas/GROUPS/PHYSICS/PAPERS/EXOT-2015-18/International audienceA search is presented for new resonances decaying to a WW or ZZ boson and a Higgs boson in the +bbˉ\ell^+ \ell^- b\bar b, νbbˉ\ell\nu b\bar b, and ννˉbbˉ\nu\bar{\nu} b\bar b channels in pppp collisions at s=13\sqrt s = 13 TeV with the ATLAS detector at the Large Hadron Collider using a total integrated luminosity of 3.2 fb1^{-1}. The search is conducted by looking for a localized excess in the WHWH/ZHZH invariant or transverse mass distribution. No significant excess is observed, and the results are interpreted in terms of constraints on a simplified model based on a phenomenological Lagrangian of heavy vector triplets
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