Sentence examples for favourable path from inspiring English sources

Exact(2)

The electronic structure analysis, together with the analysis of the g(r), suggests the formation of a favourable path for proton diffusion under compressed conditions that facilitates proton migration.

Here we are interested in finding the favourable path(s) between incorrect conformational states (ID 9 and 30; states on the edge of the binding funnel) and the best state found by SwarmDock (the state closest to the bottom of the binding funnel; the native complex state).

Similar(58)

For the provided examples, we were able to find the favourable binding path within a protein-protein docking funnel and to calculate the degree of coupling for two chemical reactions catalysed simultaneously by the same protein enzyme.

In the example described below we focus on the properties of the true positive binding funnel and calculate mean first-passage times between distinct conformational states within the funnel, i.e. we are interested in finding the favourable transition path from the top to the bottom of the binding funnel.

The favourable course and his form.

Here we demonstrate a simple co-precipitation and calcination routine to graft ultrathin NiCo2O4 nanosheets onto highly-ordered mesoporous carbon CMK-3 to form a new mesoporous-nanosheet structure which can accommodate stresses induced by volume changes and provide favourable conducting paths.

On this MFPT weighted network (all weights are positive) we ran the Dijkstra algorithm [ 28] to find the favourable trajectories (shortest paths in units of mean first-passage times) between conformational states on the edge of the binding funnel (I9 and I30) and the medium quality structure near the bottom of the funnel (M21).

By restraining path recording to favourable weather conditions, it becomes reliable to compare such data even collected from different years.

The good pseudocapacitive performance of the hierarchical nanostructures is mainly due to the porous structure, which provides fast ion and electron transfer, a large surface area, short ion diffusion paths, and a favourable volume change during the cycling process.

It also allows the missile to follow computer-determined paths that are aerodynamically favourable.

However, this rather modest potency boost after gaining two additional major hDAAO interactions suggest that the path through the subpocket by compound 3 is less favourable than for compound 2, or that some of the interactions found in compound 2 but not in compound 3 (see Figure 3B for two examples) are key drivers of binding affinity and, hence, inhibitory potency.

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