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To Skinner and Watson organisms learn without being innately or pre-experientially provided with implicit procedures by which to learn.
An arbitrary Lagrangian-Eulerian formulation with a nonlinear iterative force correction (NIFC) coupling is achieved in a staggered partitioned manner by means of fully decoupled implicit procedures for the fluid and solid discretizations.
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The Navier Stokes equations are solved using an implicit procedure.
The implicit procedure is based on designing the implicit Jacobian to be an M-matrix.
A new general implicit procedure that guarantees the positivity of turbulence model equations dependent variables is presented.
This paper presents an implicit procedure for the solution of the incompressible Navier-Stokes equations in primitive variables.
The results are compared with the corresponding analytical solutions and numerical solutions obtained using the Stone's strongly implicit procedure.
We use three fully implicit finite difference schemes, two fully explicit finite difference techniques, an alternating direction implicit procedure and the Barakat and Clark type explicit formula.
A positivity preserving implicit procedure for first order time integration of two-equation turbulence models is extended to second-order time integration utilizing dual-time stepping.
In this study numerical solutions using the SIP (Strong Implicit Procedure) method to the coupled mathematical model for double parallel coal seams are also developed.
The system of equations is discretized using a fully implicit procedure, with the Newton Raphson method to handle non-linearities efficiently.
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