1000 resultados para Gulliver, John Putnam, 1819-1894.


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Introduction by John P. Gulliver.

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Added title page, engraved.

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Letter signed by William Emerson requesting John Sale pay the scholarship funds. The author of the letter is likely the son of the Reverend William Emerson, who died in 1811. William Emerson (1801-1868) received an AB from Harvard in 1818; his brother Ralph Waldo Emerson (Harvard AB 1821) received the Penn Scholarship from 1817 to 1820.

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Mode of access: Internet.

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Bound with: A digest of the law of evidence / by Sir James Fitzjames Stephen. -- 4th English ed. / American ed., with annotations and references to American cases, including those of John Wilder May. -- Boston : Little, Brown, and Co., 1886. -- xxxii, 251 p.

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"Printed by order of the Senate and House of Representatives."

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"A portion of the following pages is reprinted from Putnam's monthly magazine."--Pref.

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Mode of access: Internet.

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Mode of access: Internet.

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Mode of access: Internet.

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The aim of this study is to quantify the mass transfer velocity using turbulence parameters from simultaneous measurements of oxygen concentration fields and velocity fields. The surface divergence model was considered in more detail, using data obtained for the lower range of beta (surface divergence). It is shown that the existing models that use the divergence concept furnish good predictions for the transfer velocity also for low values of beta, in the range of this study. Additionally, traditional conceptual models, such as the film model, the penetration-renewal model, and the large eddy model, were tested using the simultaneous information of concentration and velocity fields. It is shown that the film and the surface divergence models predicted the mass transfer velocity for all the range of the equipment Reynolds number used here. The velocity measurements showed viscosity effects close to the surface, which indicates that the surface was contaminated with some surfactant. Considering the results, this contamination can be considered slight for the mass transfer predictions. (C) 2009 American Institute of Chemical Engineers AIChE J, 56: 2005-2017; 2010

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Air concentration measurements performed along the lower nappe of a bottom aerator through the impact and downstream flow regions permitted the calculation of air entrainment along the jet length. The air uptake was also measured in the air supply conduit. It was shown that integration of the concentration profiles along the jet overestimates the air uptake measured in the air supply conduit. Corrective procedures were developed by adapting the concept of entrained and entrapped air, in which the latter is re-circulated in the cavity, but both are measured by air concentration probes.

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1887