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Electrochemical tests demonstrate that the sample possesses large capacities.
Simulation tests demonstrate that the proposed scheme can detect genuine islanding formation.
These tests demonstrate that the element is very accurate and robust.
Dilatometric tests demonstrate that the addition of MWCNTs decreases the anisotropy of the nanocomposite and strengthens the interactions inside it.
Platelet adhesion tests demonstrate that the hemocompatibility of the coated sample is improved.
Electrochemical tests demonstrate that the as-prepared LiNi0.5Mn1.5O4 possesses high capacity and excellent rate capability.
Discharge-charge tests demonstrate that the resulting anode exhibits excellent cyclic stability.
Verification tests demonstrate that the proposed BPNN PSO is quite efficient for in multi-criteria modeling and optimization of GMAW.
Penetration tests demonstrate that the device is robust to attack, except for certain denial-of-service attacks.
The experiments with rigorous statistical significance tests demonstrate that the proposed method performs competitively with the existing methods.
The findings of these tests demonstrate that the validity and reliability of the scale are at a sufficient level.
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CEO of Professional Science Editing for Scientists @ prosciediting.com