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The yield strength evaluated with the same approach adopted for metallic materials and alloys compares successfully with the information provided by the electrical characterization.
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Results are compared successfully to Monte Carlo Simulations.
The numerical predictions are compared successfully with experimental measurements.
The reflectance is calculated with a modal method and compared successfully with the experimental results.
The predicted curves are compared successfully to the present as well as other published experimental data.
The temperature fields measured within few millimetres from the crack tip have been compared successfully with existing analytical solutions.
The summation of the individual low and high LET results from the latter equipment compared successfully to those from the TEPC on each flight.
Numerical simulations of the bending tests of T-joints using the non-linear finite element code ABAQUS were performed and their results compared successfully with experimental data.
Cylinders of elastic material within a rigid boundary are considered first, and the numerical results are compared successfully with available closed-form analytical predictions.
These results are compared successfully with reference measurements obtained on the same sample using a conventional experimental setup based on a commercial lock-in amplifier.
The predictions of the proposed approach are compared successfully with a large experimental database, with different configurations of perforations, different stacking sequences and in different Carbon/Epoxy materials.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com