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Necessary design gradients are computed using an efficient adjoint sensitivity analysis method.
Viscosity solutions in the big rays are computed using an upwind finite difference scheme.
The average magnetic field-aligned currents are computed using an AE-dependent empirical model of the ionospheric conductance.
The topology of the unit-cell is defined in order to obtain the optimal equivalent properties for stiffness and permeability, which are computed using an asymptotic homogenization method.
The probabilities and gradients of the constraints, composed of disturbance sequences with multivariate normal distribution, are computed using an efficient simulation approach.
Here the stiffness and mobility are computed using an analysis of fluctuations in the grain boundary position during molecular dynamics simulations.
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Additionally, all these flows are computed using a CFD methodology.
Attitude and position control laws are computed using a PD, LQR and backstepping control technique.
These linear paths are computed using a depth first algorithm.
The FBP reconstructions are computed using a single GPU, and the gridrec reconstructions are computed using 16 CPU cores.
Matches are computed using a cost function, evaluated on a small window around the pixel positions.
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