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The resulting equation of motion is solved using a perturbation technique.
Then, this coupled system of nonlinear equations is solved asymptotically using a perturbation technique.
When time varying voltage is applied, the nonlinear differential equation is solved using a perturbation technique.
The coupled nonlinear differential equations are solved analytically using a perturbation technique.
Using a perturbation technique and previous L2 Neumann results, the authors obtain a generalization of earlier work in caloric cylinders.
Next, the problem is formulated as a mixed integer-discrete optimization problem and solved using a perturbation technique in order to find practical values for the design variables.
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These equations are then solved for uniformly valid solutions using a singular perturbation technique [19, 20, 21] that eliminates secular terms in the perturbed solution; the shock strength is assumed small, but the accompanying first-order jump discontinuity may be finite (i.e., O(1)) or small.
The speed of the power flow algorithm has been improved using a simple perturbation technique.
The influence of the fractal morphology on the Knudsen diffusivities was calculated using a fractal perturbation technique.
Using a regular perturbation technique, an analytical solution is reached for laminar flow mass transfer in hollow fibers containing a chemical reaction.
The frequencies are found approximately using asymptotic analysis and a perturbation technique.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com