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To find the optimal solution, the model can be solved by any standard algorithm for zero one integer programming.
So even if the bias is physically possible or not, for the NR algorithm to find a solution the model must evaluate at all bias.
Based on the 2-D Poisson's solution, the model gives the closed form solutions of the surface potential and electrical field distributions as a function of the structure parameters and drain bias.
Using a cylindrical permanent magnet as a selected solution, the model has been applied to a robotic endoscopic capsule as a pilot study in the design of magnetically-driven robots.
In solution, the model is most accurate for probes with length ≤40 oligonucleotides [37], [38] and probes greater than 40 oligonucleotides in length have thus been considered non-ideal for nearest-neighbor based thermodynamic modeling.
For structure solution, the model of Pikp-HMA was positioned in the asymmetric unit of the Pikp-HMA/AVR-PikD crystal by molecular replacement using Phaser McCoyy et al., 2007).
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Therefore, alternatives to the standard solution –the preferred model– are difficult to consider.
"Solution", the solution of the model is presented.
Instead if there are no compatible solutions, the model is said to be overidentified.
As such, there may be several solutions the model can converge to, with some that are biologically plausible yet quite different.
We also provide the sophisticated solution of the model while SGCCA heuristically estimates the optimal solution by following Wold's algorithm in the previous work [ 17].
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com