3,905 research outputs found

    Clergy Sexual Malpractice

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    Fourier transform infrared spectrometer for a single aerosol particle

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    A spectrometer is reported here for obtaining the infrared spectrum of a single aqueous aerosol particle by a Fourier transform technique. The particle is held in an electrodynamic balance and irradiated simultaneously by the infrared output from a Michelson interferometer and the visible light from a dye laser. The size of the particle is modulated by chopping the IR beam, and the resulting visible scattered light fluctuation is detected at 90Ā° with a photomultiplier tube. The amplitude of the scattered light fluctuation is measured with a lock-in amplifier at each interferometer mirror position. The electronic circuitry for stepping the interferometer mirror is presented and discussed. Inverting the lock-in signal by a discrete fast Fourier transform routine (FFT) yields the particle absorption spectrum. The resulting spectrum for an (NH4)2SO4 droplet is presented

    Comparison of Family 9 Cellulases from Mesophilic and Thermophilic Bacteria

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    Cellulases containing a family 9 catalytic domain and a family 3c cellulose binding module (CBM3c) are important components of bacterial cellulolytic systems. We measured the temperature dependence of the activities of three homologs: Clostridium cellulolyticum Cel9G, Thermobifida fusca Cel9A, and C. thermocellum Cel9I. To directly compare their catalytic activities, we constructed six new versions of the enzymes in which the three GH9-CBM3c domains were fused to a dockerin both with and without a T. fusca fibronectin type 3 homology module (Fn3). We studied the activities of these enzymes on crystalline cellulose alone and in complex with a miniscaffoldin containing a cohesin and a CBM3a. The presence of Fn3 had no measurable effect on thermostability or cellulase activity. The GH9-CBM3c domains of Cel9A and Cel9I, however, were more active than the wild type when fused to a dockerin complexed to scaffoldin. The three cellulases in complex have similar activities on crystalline cellulose up to 60Ā°C, but C. thermocellum Cel9I, the most thermostable of the three, remains highly active up to 80Ā°C, where its activity is 1.9 times higher than at 60Ā°C. We also compared the temperature-dependent activities of different versions of Cel9I (wild type or in complex with a miniscaffoldin) and found that the thermostable CBM is necessary for activity on crystalline cellulose at high temperatures. These results illustrate the significant benefits of working with thermostable enzymes at high temperatures, as well as the importance of retaining the stability of all modules involved in cellulose degradation

    Applying Altman\u27s Z-Score in the Classroom

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    Altman\u27s Z-score is introduced in an Excel framework to produce a quick calculation of the Z-score with actual financial data available through the Internet. The lesson plan developed is easily introduced with topics covering ratio analysis, financial risk, bond rating changes, and bankruptcy. Given the wide use of the Z-score in practice to evaluate credit risk (or bankruptcy risk), the lesson plan produces a skill set that is very marketable

    Best management practices for biosolids land application (1994)

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    "Revised 8/94/5M.""Water Quality.""Focus area : nutrients and bacterial wastes.""Published by University Extension, University of Missouri-System.

    Are Cover Stories Effective Contrarian Indicators?

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    Headlines from cover stories are collected over a twenty year period from Business Week, Fortune, and Forbes to determine if positive stories are associated with superior future performance and if negative stories are associated with inferior future performance for the featured firm (when compared to an index or to another firm within the same industry and of the same size). Statistical testing implies that positive stories generally indicate the end of superior performance and negative news generally indicates the end of poor performance

    Separation of suspended particles in microfluidic systems by directional-locking in periodic fields

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    We investigate the transport and separation of overdamped particles under the action of a uniform external force in a two-dimensional periodic energy landscape. Exact results are obtained for the deterministic transport in a square lattice of parabolic, repulsive centers that correspond to a piecewise-continuous linear-force model. The trajectories are periodic and commensurate with the obstacle lattice and exhibit phase-locking behavior in that the particle moves at the same average migration angle for a range of orientation of the external force. The migration angle as a function of the orientation of the external force has a Devil's staircase structure. The first transition in the migration angle was analyzed in terms of a Poincare map, showing that it corresponds to a tangent bifurcation. Numerical results show that the limiting behavior for impenetrable obstacles is equivalent to the high Peclet number limit in the case of transport of particles in a periodic pattern of solid obstacles. Finally, we show how separation occurs in these systems depending on the properties of the particles
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