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In this section, we apply our result in Theorem 3 to investigate the robust stability of a class of closed-loop control systems, which demonstrates that our results are handy tools to analyze the qualitative properties of solutions of some nonlinear ordinary differential and integral equations.
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Test results are presented using IEEE standard systems which demonstrate the effectiveness of the developed model.
A few preliminary results are presented for more complex systems which demonstrate some potential application areas of the method.
In contrast to the HRP-dendrimer and HRP-MB-dendrimer systems, which demonstrated very close bioelectrocatalytic patterns, multicofactor SOx wired to MB-dendrimer showed a bioelectrocatalysis superior to that based on direct ET reaction.
However, it was noted that when the culture was monitored for Y x/s, the value of controls were significantly higher than that of other systems, which demonstrated the control mainly conducted vegetative growth during this stage, produced much biomass but accumulated little CA. Higher Q s values indicate a higher biomass conversion and productivity.
For example, there are in vitro human digestive systems, which demonstrate the effect of food on the digestive system.
This paper describes the operation of a bench scale two stage continuous circulation reactor system which demonstrates the process.
One can draw identical conclusions from the numerical results of a four-DOF system, which demonstrates the ability to address multiple-DOF systems.
Then, coating was successfully performed using talc and a microcrystalline cellulose system, which demonstrates the feasibility of this novel process and led to different morphologies according to the operating conditions.
Finally, as an example in engineering practices, the presented method is used to design a longitudinal flight control system, which demonstrates the obtainability of a reasonable and correct Pareto front.
We find the substantial disparity in the scaling of the anchoring/dissociation transition for polymers/monolayer complex and polyelectrolyte/surface system, which demonstrates that the mobile anionic monolayer exerts stronger attraction on cationic polymers than uniformly charged surface, thereby illustrating the significant predominance of PIP2 lipids in the anchoring procedure.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com