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It was found that the wall length and axial stress ratio are the most influential factors contributing to the rotation and compression zone length of unbonded PT-MWs.
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To examine whether Met135 contributes to the rotation of 8-oxoG into the syn conformation and thereby for Polκ's preference for A incorporation, we compared the catalytic efficiency of nucleotide incorporation opposite a non-damaged G and 8-oxoG by the wildtype Polκ and the mutant Polκ protein harboring a mutation of Met135 to alanine (M135A).
The idea that apoptosis could be an accelerator is interesting; however, we know now that two different domains contribute to the rotation, each one turning 180°, and this could totally change this interpretation.
The three factor model with orthogonal rotation (varimax) produced the most interpretable factor structure, with all items contributing to the model.
The residual timing error contributes to the phase rotation in the frequency domain which can be compensated using the pilot symbols.
Based on measurements from fluoroscopic images, combined motion of the femoral component on the polyethylene articular surface and the bearing on the tibial insert contributed to the total axial rotation motion observed in all TKR.
When this equality is lost, the difference between τ1 and τ3 contributes to the rotation of the diffraction pattern, which makes the situation simply worse on average in this orientation condition.
Despite the conventional approach of choosing some directions for good discriminate capability, the rotation mainly contributes to the generation of diversity among the classifiers without weakening the individual classifiers.
It's believed that the high temperature mixing process and continuous rotation contributed to the grain refinement and assembled porous structure, respectively.
The experimental results from previous tests showed that the innovative joint is more ductile than the traditional joint, but the detailed analysis developed in this paper demonstrates that the fixed end rotation contributes to the global ductility of the joint.
We demonstrate that the particle shape, the surface energy anisotropy of the particle, and the misorientational anisotropy of the particle substrate interface all contribute to the driving force for particle rotation.
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