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BIM Project Management 8Dec15
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On Sep 17th Catalyst brought a panel of academic and industry thought leaders for a lively discussion on the issue of data reproducibility in academic research. Moderated by Cathy Tralau-Stewart, head of the Therapeutics track of the Catalyst Awards, the panel explored causes and potential solutions for a problem that has been receiving national attention in both scientific and popular media. Panelists included Keith Yamamoto, Vice Chancellor for Research at UCSF; Larry Tabak, Principle Deputy Director, NIH; John Ioannidis, Professor of Health Research Policy at Stanford School of Medicine; Elizabeth Iorns, Co-Founder, Science Exchange; Parker B. Antin, Board of Directors President, FASEB; Amanda Halford, MBA, VP of Research, Sigma-Aldrich. http://ctsi.ucsf.edu/news/about-ctsi/data-reproducibility-preclinical-research-and-discovery
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The mechanism of heterogeneous nucleation of β-form L-glutamic acid was deeply investigated in cooling crystallization. The present study found that the β-form crystals were epitaxially grown on the α-form crystals and they were preferably crystallized on the (011) and (001) surfaces instead of the (111) surfaces of α- form crystals. This result was explained via the molecular simulation. The molecular simulation indicated that the different surfaces of α-form crystals provided different functional groups, resulting in different sites for the heterogeneous nucleation of β-form crystals. Here, the functional group were COO- , C=O and O-H on the (011) and (001) surfaces of α-form crystals, respectively, while it was the NH3 + on the (111) surfaces of α-form crystals. As such, the degree of lattice matching (E) between the β-form crystals and the various surfaces of α- form crystal was distinguished, where the degree of lattice matching (E) between the β-form crystals and the (011), (001) and (111) surfaces of α-form crystal were estimated as 5.30, 5.25 and 2.39, respectively, implying that the (011) and (001) surfaces of α-form crystal were more favorable to generate the heterogeneous nucleation of β-form crystals than the (111) surfaces of α-form crystal
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