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The tensile and bending stiffness was characterized for a set of couple helical coils with different geometric designs, with right-handed and left-handed polymer helices fused together in joints where the filaments cross.
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This results in a set of coupled nonlinear differential equations.
Using this Hamiltonian, a set of coupled equations of motion for the phonons is obtained.
A set of coupling-coefficient-angles of fiber couplers were obtained.
The solutions are provided in terms of a finite set of coupled linear matrix inequalities (LMIs).
Resulting set of coupled nonlinear governing equations are solved numerically using Runge Kutta based shooting technique.
The MIMO model is described by a set of coupled multiple-input, single-output models (MISO).
The model consists of a set of coupled, hyperbolic, parial-differential equations.
An exact solution is implemented to solve the set of coupled field equations.
This gives rise to a set of coupled Hill's equations with complex coefficients.
It is shown that the control law is in terms of the solutions of a set of coupled Riccati inequalities.
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CEO of Professional Science Editing for Scientists @ prosciediting.com