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For the quantum transport, we use the non-equilibrium Green's function formalism [14].
To help understand the slurry distribution and transport we use a two stage modelling process.
Although this sort of relation has been offered as support for non-linear models of soil transport, we use 1-D analytical hillslope profiles derived from existing soil transport laws to show that a model with soil flux linear in slope, but including a slope stability threshold, is indistinguishable from a non-linear law within the scatter of our data.
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First, to study APP transport we used live cell imaging confirming previous data, which showed that sorLA-WT significantly decreased the velocity and distance traveled by APP.
To detect levels of individual ROS generated by PSII-driven electron transport, we used a reaction buffer containing 0.1 M sucrose, 10 mM NaCl, 10 mM KCl, 5 mM MgCl2, 10 mM Tricine, 1 mM KH2PO4, and 0.2% BSA (pH 8.0).
Even though the concentration of 3M3SH in human sweat is very low, it has got a profound influence on sweat perception due to its low odour threshold 4. For measuring ABCC11-mediated transport, we used Sf9 insect cell vesicles enriched with recombinant ABCC11 protein.
DOI: http://dx.doi.org/10.7554/eLife.00654.010 To determine the proportion of time that SSTR3 and Smo spend undergoing active transport we used a statistical analysis of instant velocities, which overcomes the intrinsic bias in manually selecting processive segments from the single molecules kymographs.
Under collision-free hole transport conditions, we use the following Bethe relation [19, 20] to estimate the thermionic capture time for holes reaching the top of the potential barrier Φ (process 1 in Figure 1).
Similar to our earlier approach for multiscale transport equations, we use the even- and odd-parity formulation of the kinetic equation, and then reformulate it into the diffusive relaxation system (DRS).
As molecular dynamics simulation is much faster than other approaches and can handle nonlinearity when dealing with heat transport, we will use it throughout our work as long as the temperature is not very low. Figure 1 Lattice thermal conductivity of tube (4,2) as a function of temperature.
To study the Co2+ transport activity, we used our previously reported Co2+ transport assay, where a corA-deficient E. coli strain that is resistant to Co2+ becomes highly Co2+-sensitive upon expressing recombinant TmCorA [ 4].
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