595 research outputs found

    Magnetization of Bi2_{2}Sr2_{2}CaCu2_{2}O8+δ_{8+\delta} micrometer thin ring and its depinning line

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    We demonstrate a geometrical effect on the depinning line (DL) of the flux line lattice of the Bi2_{2}Sr2_{2}CaCu2_{2}O8+δ_{8+\delta} high-Tc_c superconductor (HTSC) micrometer ring. The DL shifts to notably lower temperatures in comparison to bulk crystals and thin flakes of the same sample. The shift is attributed to a decrease in the overall pinning potential due to a double size effect, namely: a) the ring thickness ∼1 μ\sim 1~\mum being smaller than the pinning correlation length, and b) the increase in the effective London penetration depth of the vortices (Pearl vortices). The large shift of the DL to lower temperatures may influence the suitability of this HTSC for applications in microstrip antennas and THz emitters.Comment: Reviewed, AAM. 13 pages, 10 figure

    Fission product behavior in the Molten Salt Reactor Experiment

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    Essentially all the fission product data for numerous and varied samples taken during operation of the Molten Salt Reactor Experiment or as part of the examination of specimens removed after particular phases of operation are reported, together with the appropriate inventory or other basis of comparison, and relevant reactor parameters and conditions. Fission product behavior fell into distinct chemical groups. Evidence for fission product behavior during operation over a period of 26 months with sup235sup 235U fuel (more than 9000 effective full-power hours) was consistent with behavior during operation using sup233sup 233U fuel over a period of about 15 months (more than 5100 effective full- power hours). (auth

    Estimating trade elasticities for South Africa’s agricultural commodities for use in policy modelling

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    The computable general equilibrium (CGE) model is often used to analyse the effects of policy changes because of its ability to capture multi-sectoral inter-linkages within the economy. The results of a CGE analysis largely depend on the database, policy shock and elasticities. Trade elasticities, such as the Armington elasticities, play a central role in CGE models to determine the demand substitution between commodities from different sources as a result of changes in relative prices. Because of their role, modellers are keen to know the correct elasticities for use in CGE models. Despite their importance, elasticities for South African agricultural commodities are outdated, leaving researchers to rely on value judgements. We address this limitation by estimating the Armington and export supply elasticities for individual and aggregate agricultural commodities using updated time-series data (1980–2016). The results for the two sets of trade elasticities show that estimates for an aggregate agriculture tend to be inelastic compared to estimates for an individual product, indicating a higher sensitivity of products to relative price changes. The Armington estimates were found to be closer to unity for the majority of products, suggesting that agricultural imports are imperfect substitutes for domestic products. The export supply elasticities for grains were found to be more elastic than for fruit and meat, implying that domestic grain production is relatively more responsive to price changes in the export markets. The long-run estimates for the two sets of elasticities were found to be larger than the short-run estimates for all agricultural products.http://www.tandfonline.com/loi/ragr202020-04-09hj2018Agricultural Economics, Extension and Rural DevelopmentEconomic

    Increased glutamine in leaves of poplar transgenic with pine GS1a caused greater anthranilate synthetase α-subunit (ASA1) transcript and protein abundances: an auxin-related mechanism for enhanced growth in GS transgenics?

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    The initial reaction in the pathway leading to the production of indole-3-acetic acid (IAA) in plants is the reaction between chorismate and glutamine to produce anthranilate, catalysed by the enzyme anthranilate synthase (ASA; EC 4.1.3.27). Compared with non-transgenic controls, leaves of transgenic poplar with ectopic expression of the pine cytosolic glutamine synthetase (GS1a; EC 6.3.1.2) produced significantly greater glutamine and significantly enhanced ASA α-subunit (ASA1) transcript and protein (approximately 130% and 120% higher than in the untransformed controls, respectively). Similarly, tobacco leaves fed with 30 mM glutamine and 2 mM chorismate showed enhanced ASA1 transcript and protein (175% and 90% higher than controls, respectively). Furthermore, free IAA was significantly elevated both in leaves of GS1a transgenic poplar and in tobacco leaves fed with 30 mM glutamine and 2 mM chorismate. These results indicated that enhanced cellular glutamine may account for the enhanced growth in GS transgenic poplars through the regulation of auxin biosynthesis

    Harnessing plant biomass for biofuels and biomaterials

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    Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/72519/1/j.1365-313X.2008.03512.x.pd

    Processing of Thionin Precursors in Barley Leaves by a Vacuolar Proteinase

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    Thionins are synthesized as precursors with a signal peptide and a long C-terminal acidic peptide that is post-translationally processed. A fusion protein including the maltose-binding protein from Eschrrichia coli (MalE), thionin DG3 froin barley leaves, and its acidic C-terminal peptide has been used to obtain antibodies that recognize both domains of the precursor. In barley leaf sections. mature thionins accuinulated in the vacuolar content, while the acidic peptide was not detected in any cell fraction. Brefeldin A and inonensin inhibited processing of the precursor but its export from the microsomal fraction was not inhibited. Both purified vacuoles aiid an acid (pH 5.5) extract from leaves processed the fusion protein into a MalE-thionin and an acidic peptide fragment. A 70-kDa proteinase that effected this cleavage was purified froin the acid extract. Processing of the fusion protein by both lysed vacuoles and the purified proteinase was inhibited by Zn2+ and by Cu2+, but not by inhibitors of the previously described vacuolar processing thiol or aspartic proteinases. In vivo processing of the thionin precursor in leaf sections was also inhibited by Zn+, and Cu2+, Variants of the fusion protein with altered processing sites that represented thme of thionin precursors from different taxa were readily processed by the proteinase, whereas changing the polarity of either the C-terminal or N-terminal residues of the processing site prevented cleavage by the proteinase

    An integrative environmental pollen diversity assessment and its importance for the Sustainable Development Goals

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    Pollen is at once intimately part of the reproductive cycle of seed plants and simultaneously highly relevant for the environment (pollinators, vector for nutrients, or organisms), people (food safety and health), and climate (cloud condensation nuclei and climate reconstruction). We provide an interdisciplinary perspective on the many and connected roles of pollen to foster a better integration of the currently disparate fields of pollen research, which would benefit from the sharing of general knowledge, technical advancements, or data processing solutions. We propose a more interdisciplinary and holistic research approach that encompasses total environmental pollen diversity (ePD) (wind and animal and occasionally water distributed pollen) at multiple levels of diversity (genotypic, phenotypic, physiological, chemical, and functional) across space and time. This interdisciplinary approach holds the potential to contribute to pressing human issues, including addressing United Nations Sustainable Development Goals, fostering social and political awareness of these tiny yet important and fascinating particles
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