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The numerical accuracy of the proposed method is demonstrated by comparing the numerically force-deflection curves with the corresponding experimental results found in the literature.
The accuracy of these algorithms is analyzed for general fields and is confirmed by comparing the numerically computed value with its exact solution under a homogeneous magnetic field.
Both methods are tested for accuracy by comparing the numerically calculated electrostatic fields against those analytically obtained for a dielectric sphere and dielectric ellipsoid in a uniform field and for a dielectric sphere in a point charge field.
High-fidelity finite element models of drop weight tests on reinforced concrete (RC) beams conducted previously by the authors are developed and validated by comparing the numerically simulated results with measured experimental data.
Similar(56)
Studying the two situations (no-load test and load test), the proposed model is validated in normal state by comparing the results obtained numerically (by the computer code and block diagram) along the cable and with some recoded real measurements available in sending-end (Tyna substation).
Subsequently, the presented formulas were confirmed to be reasonably accurate by comparing the bearing capacities calculated numerically with those measured experimentally.
The accuracy of the developed approach is verified numerically by comparing the calculated results with reference solutions.
The efficiency of the proposed analytical approach for the forward scheme in the identification of vehicle parameters has been judged by comparing the CPU processing time when numerically simulated samples are used.
Experimentally observed variation in fracture resistance is substantiated numerically by comparing the experimental and VMCM load displacement responses of geometrically scaled single edge-notch three point bend (SETB) specimens.
The exact solution has been numerically validated by comparing the results with those obtained by a refined finite element simulation.
The effectiveness of the proposed formulation is numerically assessed by comparing the results provided by its implementation in a Matlab code with available results specifically contributed by different authors for weakly non-circular inclusions.
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CEO of Professional Science Editing for Scientists @ prosciediting.com