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In CLS and TI, the researcher inputs the composition of potential end members and mixes them until the best solution is reached (the differences between CLS and TI are detailed in Pisias et al. (2013)).
Strikingly, while our data showed a constant gWAT weight and continuous increase in CLS, they showed a reduction in both gWAT weight and CLS formation after reaching a body weight of 40 g.
Finally, as was the case for mitochondrial translation and OXPHOS complex abundance, we found that deletion of SCH9 increased CLS to a greater degree than deletion of TOR1, but that there was no further increase in CLS in the tor1 Δ sch9Δ double mutant strain.
Pore-scale simulation methods based on the lattice Boltzmann method are developed to predict the macroscopic transport properties in CLs.
In this study, we summarized our analytical approach and methods for reduction of Pt loading in CLs.
Quantitative estimation of water uptake at different locations in CLs as a function of vapor activity is successfully achieved.
The amount and location of water in CLs are correlated with electrochemical double layer and effective proton conductivity.
In January 2005, the wiggler was installed in the storage ring in CLS and now experiments are carried out.
Microstructure, mass transport properties of the reactants, and their relation in CLs were elucidated by applying experimental analyses and computational methods.
A simple CL model for I V performance prediction was then established, where experimentally elucidated parameters of the microstructure and the properties in CLs were taken into account.
The authors in [22] proved that the CRLB for the NLOS will become the CRLB for the LOS when NLOS errors go to 0 in CLS and LPS.
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