Exact(1)
The stability of the patterns acquired demonstrates that our methods provide a systematic and precise way to unveil the structure of atomic clusters without extensive detrimental damage of their crystallinity.
Similar(58)
This result demonstrates that our method has good repeatability.
This demonstrates that our method has second order convergence in time.
This demonstrates that our method is stable as mass resolution is changed.
Experimental evaluation demonstrates that our method improves the performance of dexterous grasping under shape uncertainty.
The result demonstrates that our method has a better correlation with the intuitions of human judgments than other related works.
Furthermore, Table 4 demonstrates that our method offers lower computational times thus making it a suitable choice in tasks that demands parallel computing.
Though we choose different values, the results are similar and satisfying, which demonstrates that our method is less sensitive to the choice of σ.
The present investigation demonstrates that our method is simple, eco-friendly, and cost-effective for the synthesis of small-size ZnO materials.
More importantly, this simulation demonstrates that our method can be applied to do clustering or phylogenetic analysis.
This demonstrates that our method is substantially tolerant to noise.
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