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The objection function is solved by splitting the Bregman algorithm.
This system is solved by splitting it into two parts: the propagative part is discretized explicitly, using a fourth-order ADER scheme on a Cartesian grid, and the diffusive part is then solved exactly.
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Fully discretized incompressible Navier Stokes equations are solved by splitting the algebraic system with an approximate factorization.
The resulting equations are solved by splitting the reaction and advection steps so as to allow the combination of numerical techniques from quantum mechanics and computational fluid dynamics by identifying the skew-hermitian reaction matrix as a generator of unitary rotations.
In this case the Langevin equations which correspond to the drift kinetic equation have been solved by splitting the particle motion into a deterministic part which is interrupted by an artificial collision event.
To overcome the difficulties due to large density and viscosity ratio, the Navier Stokes equations are solved by a splitting method based on a pressure Poisson equation [11], while the Cahn Hilliard equation is solved by a convex splitting method.
Furthermore, numerical implementation is solved by the additive operator splitting (AOS) scheme, resulting in fast convergence rate.
This system of nonlinear equations is solved by coupling three numerical methods, Jacobian-free Newton Krylov, operator splitting, and multigrid linear solvers.
The CU splitting optimization in HEVC is formulized as a binary classification problem and is solved by support vector classification.
This problem is solved by limited-slip differentials -- which have been optional on many cars for decades -- that link both driving wheels and split the available torque between them.
"It is solved by walking".
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com