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Here, three closely-related coupling methods are considered.
The current review focuses on the relevance and practical benefit of interpolymer radical coupling methods.
The performance of both coupling methods is compared in application to some crack propagation problems.
Coupling methods between different approaches and length scales by multiscale models are outlined.
This new method overcomes some shortcomings of the commonly used receptance coupling methods.
We present a way of constructing multi-time-step monolithic coupling methods for elastodynamics.
The investigation also concluded that a converged and stable simulation can be achieved with three different data coupling methods.
The optical waveguide structures were formed and their properties were investigated using prism coupling and end-face coupling methods.
The model was also used to simulate different coupling methods to transmit and receive signals to the powerline.
We propose two new iterative coupling methods that allow for the simultaneous execution of flow and structure solvers.
The performance of both coupling methods is compared, in application to highly non-linear crack propagation problems.
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