157 research outputs found

    Production of He-4 and (4) in Pb-Pb collisions at root(NN)-N-S=2.76 TeV at the LHC

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    Results on the production of He-4 and (4) nuclei in Pb-Pb collisions at root(NN)-N-S = 2.76 TeV in the rapidity range vertical bar y vertical bar <1, using the ALICE detector, are presented in this paper. The rapidity densities corresponding to 0-10% central events are found to be dN/dy4(He) = (0.8 +/- 0.4 (stat) +/- 0.3 (syst)) x 10(-6) and dN/dy4 = (1.1 +/- 0.4 (stat) +/- 0.2 (syst)) x 10(-6), respectively. This is in agreement with the statistical thermal model expectation assuming the same chemical freeze-out temperature (T-chem = 156 MeV) as for light hadrons. The measured ratio of (4)/He-4 is 1.4 +/- 0.8 (stat) +/- 0.5 (syst). (C) 2018 Published by Elsevier B.V.Peer reviewe

    The handbook for standardized field and laboratory measurements in terrestrial climate change experiments and observational studies (ClimEx)

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    1. Climate change is a world‐wide threat to biodiversity and ecosystem structure, functioning and services. To understand the underlying drivers and mechanisms, and to predict the consequences for nature and people, we urgently need better understanding of the direction and magnitude of climate change impacts across the soil–plant–atmosphere continuum. An increasing number of climate change studies are creating new opportunities for meaningful and high‐quality generalizations and improved process understanding. However, significant challenges exist related to data availability and/or compatibility across studies, compromising opportunities for data re‐use, synthesis and upscaling. Many of these challenges relate to a lack of an established ‘best practice’ for measuring key impacts and responses. This restrains our current understanding of complex processes and mechanisms in terrestrial ecosystems related to climate change. 2. To overcome these challenges, we collected best‐practice methods emerging from major ecological research networks and experiments, as synthesized by 115 experts from across a wide range of scientific disciplines. Our handbook contains guidance on the selection of response variables for different purposes, protocols for standardized measurements of 66 such response variables and advice on data management. Specifically, we recommend a minimum subset of variables that should be collected in all climate change studies to allow data re‐use and synthesis, and give guidance on additional variables critical for different types of synthesis and upscaling. The goal of this community effort is to facilitate awareness of the importance and broader application of standardized methods to promote data re‐use, availability, compatibility and transparency. We envision improved research practices that will increase returns on investments in individual research projects, facilitate second‐order research outputs and create opportunities for collaboration across scientific communities. Ultimately, this should significantly improve the quality and impact of the science, which is required to fulfil society's needs in a changing world

    The Symbolic Earth: Discourse and Our Creation of the Environment

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    The core dilemma in environmental advocacy may be illustrated by the question, “When we communicate about the world, should we stress what we know or what we feel?” The contributors to The Symbolic Earth argue that it is more important to decide how we should talk about what we know and feel. In their view, the environment is largely a product of how we talk about the world. Because the environment is a social construction, the only hope we have of preserving it is to understand and alter the fundamental ways we discuss it. This collection first examines the ways in which discourse creates environment perceptions. Subjects discussed range from the description of natural scenery to the advocacy of political interest groups, from the everyday interactions of citizens facing environmental crises to the greenwashing of corporate imagemakers, and from the psychology of the mass public to the social constructions of the mass media. The authors include nationally known scholars of environmental history, rhetorical theory, ethnography, communication and journalism studies, public policy, and media criticism. James G. Cantrill is associate professor of communication and performance studies at Northern Michigan University. Christine L. Oravec is professor of communication at the University of Utah. This valuable contribution to environmental studies will stimulate interdisciplinary approaches to the complex issues currently classified as \u27environmental.\u27 -- Choice This collection of essays is stimulating reading and makes a significant contribution to our understanding of the complex interaction of communication and environment. -- Interdisciplinary Studies in Literature and Environmenthttps://uknowledge.uky.edu/upk_environmental_sciences/1000/thumbnail.jp
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