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Our model reproduced fairly well previously reported experimental data on the number of DSBs and cell survival curves.
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Transient calculations show that the time constant for ignition matches well with previously reported results.
Individual agglomerate strength, at fracture, was calculated from compression tests with deformation behavior correlating well with previously reported modeling results.
Free-standing membranes of 2a c as well as previously reported 2f h were prepared by the solution-casting method.
The simulation outputs corresponded well with previously reported experimental observations and measurements carried out using electrical capacitance tomography and high-speed camera techniques in the present study.
Interestingly, the obtained data compare well with previously reported ensemble measurements, illustrating the potential of this approach to improve our understanding of RNA stability and dissociation kinetics.
The proposed model compares reasonably well with previously reported experimental data and correlations for mass transfer from a sphere in a fluid flowing at uniform approach velocity, in a fixed or fluidised bed, and in a stirred tank.
In addition, we propose a feed-forward model for neurovascular coupling which accounts for the changes in OEF seen following baseline changes, including both the current physiological perturbations as well as previously reported pharmacologically induced changes.
Results based on GSS BLASTx and BLASTn possessed significant similarity (E value < 10− 6) with available data in public databases, with the majority matching well to previously reported fish sequences.
We compare these results, as well as previously reported experimental results for fibrils formed by other β-amyloid fragments, with theoretical predictions of molecular alignment based on databases of residue-specific alignments in antiparallel β-sheets in known protein structures.
The theoretical results agree well with previously reported experimental values.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com