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Subsequently, we studied the equation of state (EoS) parameter wRDE in this situation.
Subsequently, we studied the role of the water-soluble and -insoluble fractions of BSG in the production of α-amylase.
Subsequently, we studied the effect of these interfacial properties on the irradiation behavior (i.e., volume swelling, amorphization, and mechanical properties) of the SiC ceramics.
Subsequently, we studied the toxicity of these materials toward eukaryotic and prokaryotic cells and the effect of the silica surface on the antibacterial activity.
Subsequently, we studied the penetration of high and low negatively charged fluorescent silica nanoparticles (30 nm; red and 100 or 70 nm; green; zeta potential: − 40 mV and − 20 mV) and as well as Cy5-conjugated pegylated PLGA nanoparticles (200 nm, − 7 mV) in both homo- and heterospheroid models.
Subsequently, we studied the toluene degradation process using iJN746 (see below).
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Subsequently, we study the influence of the additional unimodular matrix.
Subsequently, we study the shortest path problem and the min-cut problem under these two correlated models.
Subsequently, we study the robustness of this optimal performance to small perturbations of the input spectrum and illustrate the advantages of nonlinear designs relative to linear ones.
Subsequently we studied how a variation in the significant parameters would affect the behaviour of the pathway when varied one-at-a-time and in pairs of two.
Subsequently we study how varying the value of these parameters affects the behaviour of the model.
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