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Titlebook: Characterization of Porous Solids and Powders: Surface Area, Pore Size and Density; S. Lowell,Joan E. Shields,Matthias Thommes Book 2004 S

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Characterization of Porous Solids and Powders: Surface Area, Pore Size and Density978-1-4020-2303-3Series ISSN 1567-827X
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https://doi.org/10.1007/978-3-540-68359-9volume specific surface areas, sample cell void volume, and numerous other calculated volumes, all require accurately measured powder densities or specific volumes. It is appropriate, therefore, to introduce density measurements of solids.
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Was wird hier eigentlich gespielt?,of radius . cm exhibits 4π.. cm. of surface. In reality, however, mathematical, perfect or ideal geometric forms are unattainable since under microscopic examinations all real surfaces exhibit flaws. For example, if a ‘super microscope’ were available one would observe surface roughness due not only
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https://doi.org/10.1007/978-3-662-39586-8ngle x-ray and neutron scattering (SAXS and SANS), mercury porosimetry, electron microscopy (scanning and transmission), thermoporometry, NMR-methods, and others. Each method has a limited length scale of applicability for pore size analysis. An overview of different methods for pore size characteri
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Handlungsfelder der Personalwirtschaft,les required to cover the solid with a single molecular layer. Equally important is the cross-sectional area of each molecule or the effective area covered by each adsorbed molecule on the surface. The surface area then, is the product of the number of molecules in a completed monolayer and the effe
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Unternehmenskultur und Unternehmensstruktur,er methods [e.g., 1, 2] including methods based on small angle x-ray scattering and small neutron scattering [3] have been developed. Whereas the scattering methods cannot be used in routine operations (to date at least), immersion calorimetry and in particular permeability measurements are more fre
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