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The outcomes, mass of deposit, area fractions of particles and microhardness of particles are evaluated methodically.
Particles are evaluated using a fitness function that is designed to minimize the side effects of sanitization.
Particles are evaluated independently in each camera, and then the data are fused in accordance with the confidence.
The sintering forces and the contact areas in linked particles are evaluated from the phase field variables, computed in PFM and introduced into the calculation of the rigid motion of particles in DEM.
In this approach, the liquid flow is modeled using a volume-averaged system of governing equations, whereas motions of bubbles and particles are evaluated by the Lagrangian trajectory analysis procedure.
The particle liquid drag and the gas liquid interactions, i.e. the gas liquid drag due to the relative motion between the fluids and the force by which the gas pushes the liquid against the solid particles, are evaluated from theoretical considerations.
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Deposited particles were evaluated by the statistical analysis.
Furthermore, mucoadhesive properties of all particles were evaluated via rheological measurements.
Surface area and microporosity of the diatom particles were evaluated by nitrogen physisorption methods.
Morphology, size characteristics and density of produced particles were evaluated as the response.
The particles were evaluated in terms of particle size (laser diffraction) and microscopic morphology (scanning electron microscopy).
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CEO of Professional Science Editing for Scientists @ prosciediting.com