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The superiority of this serial model over property-averaging models, and the inapplicability of relative velocity models, for predicting the expansion of semi-batch liquid-fluidized beds of multi-species solids are also demonstrated.
In order to make the book self-contained, some basic concepts of solid-state phys ics, as well as various cathodoluminescence techniques and the processes leading to luminescence phenomena in inorganic solids, are also described.
The results obtained with no addition of β-glucosidase and those obtained with 2.44 kg β-glucosidase per MT dry solids are also are included.
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The thermal stability of the solids was also investigated up to 800 °C.
For comparison, the phenomenological Tsai Wu strength criterion for anisotropic solids is also implemented.
The propagation of waves in case of non-heat conducting solids is also discussed.
For comparative purposes, diverse solids were also obtained by the conventional sol-gel method (P-series).
A model of the time-evolution of the electric current generated during defluidization of the bed solids is also presented.
The effects of the physical characteristics of the solids were also included in the four correlations so proposed.
The surface acid base/redox properties of the solids were also evaluated by using 2-propanol conversion and pyridine chemisorption.
However, ductile fracture of uncracked solids is also one of the main concerns in structural engineering, especially for strong seismic loading.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com