8 research outputs found

    Observation of B̅0→D(*)0pp̅

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    journal articl

    テロリストに対する自衛権の適用可能性(2)

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    departmental bulletin pape

    Molecular analysis and genome discovery / edited by Ralph Rapley and Stuart Harbron.

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    Includes bibliographical references and index.Book fair 2013.p.

    The PKD1 family of proteins as exemplified by the 10 SpREJs and five hPKD1 protein architectures

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    <p><b>Copyright information:</b></p><p>Taken from "The 10 sea urchin receptor for egg jelly proteins (SpREJ) are members of the polycystic kidney disease-1 (PKD1) family"</p><p>http://www.biomedcentral.com/1471-2164/8/235</p><p>BMC Genomics 2007;8():235-235.</p><p>Published online 13 Jul 2007</p><p>PMCID:PMC1934368.</p><p></p> The predicted secondary structures are shown. Domain boundaries were taken from the Pfam database. The REJ domain is split into two sections in SpREJ7 and partial REJ domains occur in SpREJ8 and 9, and hPKD1L2. hPKD1L3 does not contain a REJ domain. Most of these predicted structures show a GPS domain upstream of transmembrane helix 1 (TM1) and a PLAT/LH2 domain immediately after the first TM

    自然と科学 前期(第2章 自然と科学,III サイエンスリテラシープロジェクトII-問題発見・解決型の学習を通して多元的な思考力と探求心を育む-)

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    2010-01-25自然と科学は高校1年生を対象としている。前期は「地球誌」をテーマとして、主に4つの角度から考えた。鉱物と地球の関係を学んだ後、遺伝子の受け渡しや生命の多様性について考えた。生命の進化を考えるには、地球環境の変化を考えなければならないため、天候の変化、地形の変化を地理学的に考察した。また、地球の誕生からどのように元素が変化し、循環してきたのかを化学的に考えた。departmental bulletin pape

    Modeling Ammonothermal Growth of GaN Single Crystals: The Role of Transport

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    Single crystal gallium nitride (GaN) is an important technological material used primarily for the manufacture of blue light lasers. An important area of contemporary research is developing a viable growth technique. The ammonothermal technique is an important candidate among many others with promise of commercially viable growth rates and material quality. The GaN growth rates are a complicated function of dissolution kinetics, transport by thermal convection and crystallization kinetics. A complete modeling effort for the growth would involve modeling each of these phenomena and also the coupling between these. As a first step, the crystallization and dissolution kinetics were idealized and the growth rates as determined purely by transport were investigated. The growth rates thus obtained were termed ‘transport determined growth rates’ and in principle are the maximum growth rates that can be obtained for a given configuration of the system. Using this concept, a parametric study was conducted primarily on the geometric and the thermal boundary conditions of the system to optimize the ‘transport determined growth rate’ and determine conditions when transport might be a bottleneck
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