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Exact(26)
Graphs for both loading and unloading are shown and in general both follow the same path.
Solid models were created of the femur, tibia, and menisci for both loading conditions.
The load displacement response for both loading and unloading steps was recorded during the testing.
However, the modulus of hair decreases irreversibly for both loading conditions.
The numerical results agree well with the experiments for both loading scenarios.
For both loading cases, fatigue lives were shorter for the hydrogen-precharged specimens than for the uncharged specimens.
Similar(34)
Any effect of inequality is the same for both loads and is therefore eliminated.
The non-linear buckled shape for both load cases is shown in Fig. 13 for Load Case IA and Fig. 14 for Load Case IB.
A Large Eddy Simulation (LES) approach was adopted, validated for both load conditions in earlier studies.
A parametric finite element model was developed using ANSYS for both load conditions.
For the Opportunistic method, thresh_count was set to 1, and volt_limit was set to 3.35 V, for both loads.
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