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Liquid marble formation using hydrophobic powders
P. McEleney
,
G. M. Walker
, I. A. Larmour
, S. E.J. Bell
Queen's University Belfast
Research output
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›
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peer-review
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Pharmacology, Toxicology and Pharmaceutical Science
Bone Cement
100%
Gentamicin
100%
Hydrophobicity
100%
Methacrylic Acid Methyl Ester
100%
Material Science
Bone Cement
50%
Contact Angle
100%
Density
100%
Hydrophobicity
50%
Silver
50%
Surface (Surface Science)
50%
Engineering
Copper Substrate
20%
Experimental Investigation
20%
Hydrophobic
100%
Powder Mass
20%
Powder Particle
40%
Size of Particle
20%