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Boundary and central solutions caused by different boundary conditions, different loading conditions, and different damage with or without noise are simulated and characterized.
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The water permeation and salt rejection of the functionalized graphene membranes with various nitrogen-doping levels were simulated and characterized.
Early-stage clustering in quenched/aged supersaturated Al Cu alloys is simulated and characterized at the atomic scale to study the structural and compositional evolution of clusters.
Detailed atomistic models of the dense glassy isotactic and syndiotactic poly allyl alcohol) (PAA) and poly vinyl alcohol) (PVA) have been simulated and characterized.
These damage modes can be simulated and characterized in the laboratory with the use of Hertzian contact testing on monolayer, bilayer, and trilayer structures to represent important aspects of crown response in oral function.
The working environment of the Mole (Martian sand-like soil) was simulated and fully characterized to allow repeatable test conditions.
The acoustical response in a room for which the reverberation is characterized is simulated and a time-reversal approach to sound source identification and acoustic tomography technique is proposed.
Several artificial waves characterized with the soil type in bridge site were simulated and used for dynamic analysis.
NS3 was simulated and analyzed.
Networks of conductance based excitatory and inhibitory neurons are simulated to characterize different types of transitions to the seizure state, and a mean field model is developed to verify the generality of the observed phenomena of excitatory-inhibitory dynamics.
The parameters, including the temperature distribution, soot density, CO and heat release rate, are simulated to characterize the mine fires at different ventilating speeds.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com