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Furthermore, molecular dynamic simulation (MD) is conducted to investigate the interfacial property of the four surfactants, and three parameters, interface formation energy, interfacial thickness, interaction between surfactant and water, are proposed to reveal the effecting mechanism of molecular structure on interfacial tension.
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Whereas, the disk diameter, aggregate size, "diameter-thickness" interaction, "aggregate size-thickness" interaction, "diameter-thickness-aggregates size" interaction, "diameter-thickness-contact angle" interaction, and "thickness-aggregates size-contact angle" interaction are marginally significant (0.050 < p ≤ 0.150).
The RM that was constructed with data from Experiment 2.1 (CUR configuration) shows that the contact angle has the greatest effect, 1.877, on the measured ITS value, followed by the effect of the "compressive strengths-thickness" interaction, −0.529.
The effect of CS in experiment 2.1 (CUR setup) is in fourth place after the effect of contact angle, compressive strengths-thickness interaction, and compressive strengths-thickness-aggregate size interaction, with a value of 0.381.
The effect of the "CS-thickness" interaction results in a decrease of 0.3330 in the estimated ITS value when one of the two factors is at the lowest level; the other is at the high level, and the factor that is at the high level goes to the lower level.
The plugin creates a custom visual style in Cytoscape where the thickness of interaction edges reflects (optionally) the number of publications, number of containing interaction databases, number of distinct detection methods, or number of containing pathways for the protein interaction (Fig. 1B).
As the thickness decreases, interaction distance between charge carriers and charged impurities shrinks due to the electrostatic equilibrium.
In these systems, the most dominant parameter on the substrate thickness was interaction between brushes and substrate surface.
The different linear relationships between deflection resistance and applied impulse are identified experimentally, considering the influences of the effects of plate thickness, fluid structure interaction parameter, and patch size of loading area.
The analysis focuses on the effects of plate thickness, fluid structure interaction parameter, and patch size of loading area on deformation and failure modes in clamped solid 5A06 aluminum alloy plates under air-backed and water-backed loading conditions.
Besides the tin microflake structure of 500 nm thickness, the interaction effects of the copper foam and Cu6Sn5 phase formed between copper and tin resulted in good cycle performance with first discharge capacity of 737 mAh g−1, 97% capacity retention after 20 cycles and still 84% after 40 cycles.
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