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The dynamic model was programmed in Aspen Custom Modeler and exported to Aspen Plus and Aspen Plus Dynamics for dynamic process simulation.
The model was programmed in Visual C++ using the Microsoft.NET Version 2.0 Framework (Redmond, WA).
The finite element model was programmed in Compaq Visual FORTRAN version 6.5.
The material balance, vapor liquid equilibrium, mole fraction summation and heat balance (MESH) model was programmed in FORTRAN language.
The model was programmed with P-SpiceTM, a software specifically designed for simulating electrical circuits but easily adaptable to physiology.
The developed multi-physics model was programmed in a Matlab Simulink® environment and an alkaline electrolyzer's simulation tool was developed.
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The model is programmed using visual digital FORTRAN and then integrated into the LLECMOD program.
This model is programmed into UGENS subroutine of the commercial finite element code ABAQUS for analyzing the nonlinear response and ultimate strength of composite laminates readily.
The mathematical model and algorithm in the presented integration model is programmed in MatLAB 7.0 and is tested with the original data set.
The proposed model is programmed in the GAMS programming language, using solver BONMIN.
The presented optimization model is programmed using a prominent programming language known as A Modeling Language for Mathematical Programming.
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