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Open image in new window Fig. 10 3D fracture configuration at the end of fracturing treatments.
The anode dielectric potential, for DD configuration, at the end of the discharge for micro-cavity width of 300 μm is reduced to 92.2%% of its initial value (φ 0i ) and for width of 600 μm, it has reached to 95.2 % of it is initial value.
The anode dielectric potential, for DD configuration, at the end of the discharge (φ 0f) for micro-cavity length of 200 μm is reduced to 99.9%% of its initial value (φ 0i) and for length of 400 μm, it has reached to 97 % of its initial value.
The Ds site from which excision was allowed has an atypical configuration at the 3' end: the 3' terminal inverted repeat (3' TIR) of the Ds end is situated adjacent to another inverted repeat of 598 bp (Figure 1A).
The raw output of a model simulation is an image of the cell configuration at the end of a simulation.
To quantify network development, we measured the compactness and the lacuna count of the cell configuration at the end of the simulation.
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The 3D fracture configurations at the end of the stimulation treatment are shown in Figs. 17 and 18.
The quantity ϕFI reports on the average position of the two slow-flipping loops in the ensemble of fully integrated configurations at the end of the CG trajectories.
In Figure 7A, the average position of the slowest-flipping loop relative to the membrane in the EOT ensemble is compared with the average position of that same loop in the ensemble of fully integrated configurations at the end of the CG trajectories.
The inclusion of charged residues on the soluble loops of the IMP can lead to significant changes in the distribution of fully integrated topologies by both altering the ensemble of protein configurations at the end of ribosomal translation, as well as by altering the available kinetic pathways that lead to fully integrated topologies.
For the simulated CG trajectories, Figure 7A demonstrates strong correlation (R = 0.85) between the position of the slowest-flipping loop in the EOT ensemble and the corresponding position in the fully integrated configuration reached at the end of the CG trajectory.
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