11,526 research outputs found

    Still against design: a response to Steven Calabresi, Sanford Levinson, and Vernon Smith

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    Our argument in Against Design may seem new, challenging, or even bizarre. One commenter, Levinson, questions whether we really mean what we say: “I presume that the authors cannot really be arguing that all design is impossible.”1 Given our admittedly unorthodox and perhaps radical challenge to common notions of design, we appreciate the thoughtful attention to our views given by our commenters Vernon Smith, Sanford Levinson and Steven G. Calabresi. Even when disagreeing with us, they have responded to Against Design with open minds

    Un prólogo sobre la democracia

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    Este texto es el prólogo del libro Gender thinking, de Steven G. Smith (Temple University Press, Philadelphia, 1992). Esta traducción que presenta La ventana se publica con la debida autorizació

    Impact of coupling an ocean model to WRF nor’easter simulations

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    The impact of ocean-atmosphere coupling and its possible seasonal dependence upon Weather Research and Forecasting (WRF) model simulations of seven, winter-time cyclone events was investigated. Model simulations were identical aside from the degree of ocean model coupling (static SSTs, 1D mixed-layer model, full-physics 3D ocean model). Both 1D and 3D ocean model coupling simulations show that SSTs following the passage of a nor’easter did tend to cool more strongly during the early season (Oct-Dec) and were more likely to warm late in the season (Feb-Apr). Model simulations produce SST differences of up to 1.14 K, but this change did not lead to significant change in storm track ( 1) and have low-to-moderate threat scores (0.31 – 0.59). Analysis of the storm environment and the overall simulation failed to reveal any statistically significant differences in model error attributable to ocean-atmosphere coupling. Despite this result, ocean model coupling can reduce dynamical field error at a single level by up to 20%, and this was slightly greater (1-2%) with 3D ocean model coupling as compared to 1D ocean model coupling. Thus, while 3D ocean model coupling tended to generally produce more realistic simulations, its impact would likely be more profound for longer-term simulations.© Copyright 2015 American Meteorological Society (AMS). Permission to use figures, tables, and brief excerpts from this work in scientific and educational works is hereby granted provided that the source is acknowledged. Any use of material in this work that is determined to be “fair use” under Section 107 of the U.S. Copyright Act September 2010 Page 2 or that satisfies the conditions specified in Section 108 of the U.S. Copyright Act (17 USC §108, as revised by P.L. 94-553) does not require the AMS’s permission. Republication, systematic reproduction, posting in electronic form, such as on a web site or in a searchable database, or other uses of this material, except as exempted by the above statement, requires written permission or a license from the AMS. Additional details are provided in the AMS Copyright Policy, available on the AMS Web site located at (http://www.ametsoc.org/) or from the AMS at 617-227-2425 or [email protected] reviewe

    Impact of Coupling an Ocean Model to WRF Nor’easter Simulations

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    The impact of ocean–atmosphere coupling and its possible seasonal dependence upon Weather Research and Forecasting (WRF) Model simulations of seven, wintertime cyclone events was investigated. Model simulations were identical aside from the degree of ocean model coupling (static SSTs, 1D mixed layer model, full-physics 3D ocean model). Both 1D and 3D ocean model coupling simulations show that SSTs following the passage of a nor’easter did tend to cool more strongly during the early season (October–December) and were more likely to warm late in the season (February–April). Model simulations produce SST differences of up to 1.14 K, but this change did not lead to significant changes in storm track ( 1) and have low-to-moderate threat scores (0.31–0.59). Analysis of the storm environment and the overall simulation failed to reveal any statistically significant differences in model error attributable to ocean–atmosphere coupling. Despite this result, ocean model coupling can reduce dynamical field error at a single level by up to 20%, and this was slightly greater (1%–2%) with 3D ocean model coupling as compared to 1D ocean model coupling. Thus, while 3D ocean model coupling tended to generally produce more realistic simulations, its impact would likely be more profound for longer-term simulations.© Copyright 2015 American Meteorological Society (AMS). Permission to use figures, tables, and brief excerpts from this work in scientific and educational works is hereby granted provided that the source is acknowledged. Any use of material in this work that is determined to be “fair use” under Section 107 of the U.S. Copyright Act September 2010 Page 2 or that satisfies the conditions specified in Section 108 of the U.S. Copyright Act (17 USC §108, as revised by P.L. 94-553) does not require the AMS’s permission. Republication, systematic reproduction, posting in electronic form, such as on a web site or in a searchable database, or other uses of this material, except as exempted by the above statement, requires written permission or a license from the AMS. Additional details are provided in the AMS Copyright Policy, available on the AMS Web site located at (http://www.ametsoc.org/) or from the AMS at 617-227-2425 or [email protected] reviewe

    Un prólogo sobre la democracia

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    Este texto es el prólogo del libro\ua0Gender thinking, de Steven G. Smith\ua0(Temple University Press, Philadelphia,\ua01992). Esta traducción que\ua0presenta La ventana se publica con la\ua0debida autorizació

    "The Translingual Sensibility: A Conversation Between Steven G. Kellman and Ilan Stavans"

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    Dialogue might be the most appropriate medium for reflections on translingualism. In a dialogue conducted by email over the course of ten days, Steven G. Kellman and Ilan Stavans consider the validity and implications of linguistic determinism. Their conversation examines whether some words that seem to embody the unique Weltanschaaung of a particular culture – such as Schadenfreude, duende, or mångata – can be appropriated, if not translated, into another culture. Pondering whether there are any inherent qualities that distinguish texts by monolingual writers such as Jane Austen and William Faulkner from work by authors who switch languages, such as Samuel Beckett and Vladimir Nabokov, they agree on the usefulness of thinking in terms of a translingual sensibility. Apart from the biographical circumstances of the author, a text possesses a translingual sensibility if it embodies an awareness of both the power and the limitations of its own verbal medium

    A Cross-Layer Multicast-Push Unicast-Pull (MPUP) Architecture for Reliable File-Stream Distribution

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    The growing deployment of OpenFlow/SDN networks makes it increasingly possible to leverage network multi-cast services. This work proposes a novel cross-layer Multicast- Push Unicast Pull (MPUP) architecture that includes functionality in the application, transport and link layers to offer users a reliable file-stream distribution service to multiple subscribers. A prototype implementation of the MPUP architecture was realized in a new version of Local Data Manager (LDM), LDM7, a software program that has been in use since 1994 for real-time meteorology data distribution. LDM6, the currently deployed version, uses application-layer multicast. Experiment were run on the GENI infrastructure to compare LDM7 and LDM6. The two main findings are (i) LDM7 can be run at a higher sending rate than LDM6 allowing for improved performance (lower file-delivery latency), and (ii) to achieve the same performance, LDM7 uses significantly lower bandwidth and compute capacity. A three-fold improvement in performance improvement was possible with LDM7, and a bandwidth reduction from 350 Mbps to 21.4 Mbps was observed with 24 receivers.Peer reviewe

    Organic wastewater compounds, pharmaceuticals, and coliphage in ground water receiving discharge from onsite wastewater treatment systems near La Pine, Oregon: occurrence and implications for transport

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    by Stephen R. Hinkle, Rodney J. Weick (Oregon Department of Environmental Quality), Jill M. Johnson (Deschutes County Environmental Health Division), Jeffery D. Cahill, Steven G. Smith, and Barbara J. Rich (Oregon Department of Environmental Quality) ; prepared in cooperation with Oregon Department of Environmental Quality and Deschutes County Environmental Health Division.Title from PDF cover (viewed on April 3, 2020).This archived document is maintained by the State Library of Oregon. It is for informational purposes and may not be suitable for legal purposes.Includes bibliographical references (pages 52-54).Mode of access: Internet from the State Library of Oregon U.S. Government Publications Collection.Text in English
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