1,204 research outputs found

    Notes on Ohioan Mammals

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    Author Institution: 6559 Salem Pike, Cincinnati, Ohio ; Museum of Natural History, University of Illinois, Urban

    Prospectus, March 16, 1992

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    https://spark.parkland.edu/prospectus_1992/1007/thumbnail.jp

    Target surface cleaning by fs laser desorption at PHELIX

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    Prospectus, March 30, 1992

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    https://spark.parkland.edu/prospectus_1992/1010/thumbnail.jp

    Radial Velocity Studies of Close Binary Stars.III

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    Radial velocity measurements and simple sine-curve fits to the orbital velocity variations are presented for the third set of ten contact binary systems: CN And, HV Aqr, AO Cam, YY CrB, FU Dra, RZ Dra, UX Eri, RT LMi, V753 Mon, OU Ser. All systems but two are contact, double-line spectroscopic binaries with four of them (YY CrB, FU Dra, V753 Mon, OU Ser) being the recent discoveries of the Hipparcos satellite project. The most interesting object is V753 Mon with the mass-ratio closest to unity among all contact systems (q = 0.970 pm 0.003) and large total mass ((M1+M2)sin^3i = 2.93 pm 0.06). Several of the studied systems are prime candidates for combined light and radial-velocity synthesis solutions.Comment: submitted for publication in Astronomical Journal; 3 figures, 2 table

    Prospectus, January 21, 1992

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    https://spark.parkland.edu/prospectus_1992/1000/thumbnail.jp

    Secretion of iron(III)-reducing metabolites during protein acquisition by the ectomycorrhizal fungus paxillus involutus

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    The ectomycorrhizal fungus Paxillus involutus decomposes proteins using a two-step mechanism, including oxidation and proteolysis. Oxidation involves the action of extracellular hydroxyl radicals (•OH) generated by the Fenton reaction. This reaction requires the presence of iron(II). Here, we monitored the speciation of extracellular iron and the secretion of iron(III)-reducing metabolites during the decomposition of proteins by P. involutus. X-ray absorption spectroscopy showed that extracellular iron was mainly present as solid iron(III) phosphates and oxides. Within 1 to 2 days, these compounds were reductively dissolved, and iron(II) complexes were formed, which remained in the medium throughout the incubation. HPLC and mass spectrometry detected five extracellular iron(III)-reducing metabolites. Four of them were also secreted when the fungus grew on a medium containing ammonium as the sole nitrogen source. NMR identified the unique iron(III)-reductant as the diarylcyclopentenone involutin. Involutin was produced from day 2, just before the elevated •OH production, preceding the oxidation of BSA. The other, not yet fully characterized iron(III)-reductants likely participate in the rapid reduction and dissolution of solid iron(III) complexes observed on day one. The production of these metabolites is induced by other environmental cues than for involutin, suggesting that they play a role beyond the Fenton chemistry associated with protein oxidation

    Prospectus, February 17,1992

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    https://spark.parkland.edu/prospectus_1992/1004/thumbnail.jp

    Prospectus, February 10, 1992

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    https://spark.parkland.edu/prospectus_1992/1003/thumbnail.jp
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