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Effect of variation of thermo-physical properties, operating conditions and three different design modifications are studied.
For the experimental study, the method is implemented in an industrial fish processing machine at the Industrial Automation Laboratory of the University of British Columbia, and the obtained results for suggested design modifications are studied and tested.
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The chemical modifications were studied by infrared and Raman microscopies.
The influence of substrate modifications is studied and the effect of this change on resonances is discussed.
Eight models with modified bone architecture were created and the mechanical variations due to these modifications were studied using microfinite element (micro-FE) simulations.
The standard T-junction microchannel and one of its modifications were studied for their mixing characteristics by performing computational fluid dynamics (CFD) simulations of pulse tracer experiments.
Microstructures of the specimens with and without surface modifications were studied using scanning electron microscopy (SEM) with energy dispersive spectrometer (EDS), showing different fracture patterns.
The resultant surface modifications were studied using X-ray photoelectron spectroscopy (XPS), contact angle measurement and secondary ion mass spectrometry (SIMS).
The original model was revised in the 90s by Bando [5] based on the dynamical non-linear effects proposed by Newell [6], after which a series of modifications were studied to optimize the model.
Instead of designing an entirely new land-use system, modifications were studied only to those practices and components recognized to be harmful to the sustainability of the traditional system itself.
Certain commercial modifications were studied to determine their effects on the alloy surfaces, which might have substantial implications on the interface between the alloys and plasma polymers deposited on them.
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