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  • 1
    Keywords: Freshwater ecology. ; Marine ecology. ; Animal culture. ; Biotic communities. ; Physical geography. ; Evolution (Biology). ; Freshwater and Marine Ecology. ; Animal Science. ; Ecosystems. ; Earth System Sciences. ; Evolutionary Theory.
    Description / Table of Contents: Introduction: the Habitat and the Ecosystem -- Shallow Hardbottom of East Florida and the Caribbean and the Regional Shelf Setting -- Macroalgae and Cyanobacteria -- Invertebrates -- Fish Assemblages -- Marine Turtles -- Functional Ecological Attributes of Shallow Hardbottom -- Mitigating Shallow Hardbottom Impacts -- Literature Cited -- Appendices.
    Abstract: Nearshore hardbottom reefs of Florida’s east coast are used by over 1100 species of fishes, invertebrates, algae, and sea turtles. These rocky reefs support reproduction, settlement, and habitat use, and are energy sources and sinks. They are also buried by beach renourishment projects in which artificial reefs are used for mitigation. This comprehensive book is for research scientists and agency personnel, yet accessible to interested laypersons including beachfront residents and water-users. An unprecedented collection of research information and often stunning color photographs are assembled including over 1250 technical citations and 127 figures. These shallow reefs are part of a mosaic of coastal shelf habitats including estuarine seagrasses and mangroves, and offshore coral reefs. These hardbottom habitats are federally designated as Essential Fish Habitats - Habitats of Particular Concern and are important feeding areas for federally-protected sea turtles. Organismal and assemblage responses to natural and man-made disturbances, including climate change, are examined in the context of new research and management opportunities for east Florida’s islands in the sand. .
    Type of Medium: Online Resource
    Pages: XVIII, 472 p. 135 illus., 125 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030403577
    DDC: 577.6
    Language: English
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  • 2
    Publication Date: 2019-07-13
    Description: In an effort to improve the accuracy of the high altitude aircraft method for calibration of high band-gap solar cells, the ozone correction procedure has been revisited. The new procedure adjusts the measured short circuit current, Isc, according to satellite based ozone measurements and a model of the atmospheric ozone profile then extrapolates the measurements to air mass zero, AM0. The purpose of this paper is to assess the precision of the revised procedure by applying it to historical data sets. The average Isc of a silicon cell for a flying season increased 0.5% and the standard deviation improved from 0.5% to 0.3% The 12 year average Isc of a GaAs cell increased 1% and the standard deviation improved from 0.8% to 0.5%. The slight increase in measured Isc and improvement in standard deviation suggests that the accuracy of the aircraft method may improve from 1% to nearly 0.5%.
    Keywords: Energy Production and Conversion
    Type: SPRAT XVIII; Sep 16, 2003 - Sep 18, 2003; Cleveland, OH; United States
    Format: text
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  • 3
    Publication Date: 2019-07-13
    Description: High altitude aircraft have been used by by the space photovoltaic (PV) community to determine the Air Mass Zero (AM0) performance of solar cells for over fifty years. Relative to in-space measurement opportunities, these methods are generally cheaper and more readily available. The data obtained, however, must be corrected for residual atmospheric effects. This paper details the correction method currently being used for the calculation of the AM0 short-circuit current (Isc) for photovoltaic devices flown on the NASA ER-2 (Earth Resources-2) calibration platform. This method would also be applicable to any other high altitude method where Isc data is collected over a sufficiently large range of altitudes.
    Keywords: Energy Production and Conversion
    Type: GRC-E-DAA-TN57540 , World Conference on Photovoltaic Energy Conversion (WCPEC); Jun 10, 2018 - Jun 15, 2018; Waikoloa, HI; United States
    Format: application/pdf
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