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The results show a method to decouple the ECCS designs with the installation of a separate nanofluids injection tank adjacent to the safety injection tanks such that a low pH environment for nanofluids can be maintained at atmospheric pressure which is favorable for their injection in passive manner.
In this study, we built upon previous approaches to develop a method to decouple the kinetics of the step-wise process of internalization, phagosomal acidification and phagosomal-endosomal/lysosomal fusion during phagocytosis in non-professional phagocytic cells.
In this study, we developed a simple method to decouple the processes of internalization and phagosomal maturation via three separate measurements, which allowed for a distinction between the time-courses for internalization and acidification, and significantly, provided distinct measurements and thereby comparison of the rates of phagosome acidification and phagosomal-endosomal/lysosomal fusion.
Unfortunately, we do not have any direct method to decouple the different sources of the dispersion in the results.
DOI: http://dx.doi.org/10.7554/eLife.03487.017 Because the strap could also play a role in the hydrolysis reaction, we needed a method to decouple closure from ATP hydrolysis.
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Unlike the traditional methods to decouple multi-input multi-output (MIMO) systems, the DyPLS framework automatically decomposes the MIMO process into a multi-loop system in the PLS subspace in the modeling stage.
In this paper we combine theoretical analysis and comprehensive finite element method simulation to decouple the three effects, and then obtain a simple model to predict the overall dynamic effects of hollow microlattice structures.
The main idea behind the method is to decouple the power of the signal-dependent photon noise from that of the signal-independent electronic noise in the space defined by sample mean versus variance, such that noise parameters can be estimated elegantly, by multivariate linear regression.
A symplectic dimensionality reduction method is proposed to decouple the dynamic system into two subsystems approximately.
A fractional-step method is applied to decouple the convection and diffusion operators in the equations in the nonreacting flow.
An idea of iterative method is applied to decouple the constraints latent variables in PLS framework and recursive least square is introduced to identify ARX-PLS model.
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