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Meanwhile, the content of graphene in composite is determined by thermogravimetric analysis (TG).
Arrangement of nanoparticles in Au@Pt composite is determined by EDX elemental mapping.
The capacitance performance of the composite is determined by cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), and charge discharge test.
The density of the fabricated composite is determined by Archimedes principle and volume fraction of void of composite is also found out.
Using the Brunauer-Emmett-Teller method, the Al/CuO nanotube composite is determined to have a larger specific surface area (43.20 m2/g) than that of the Al/CuO nanorod composite (16.75 m2/g).
The microstructure of a 3D woven composite is determined largely by the fiber architecture to the woven preform and weaving process, and to a lesser extent by the consolidation process.
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Before and after arsenic biosorption, the elemental compositions of TW/MnFe2O4 composite were determined by arbitrarily choosing areas on the surfaces of solid and then analysed by energy-dispersive X-ray (EDX) along with SEM.
The capacitance of the composite was determined using cyclic voltammetry.
The apparent interface shear frictional stress in the present composite was determined to be ∼75 MPa.
In this stage, ultimate tensile strength of the composite was determined.
The material properties of composite are determined according to a micro-mechanical model of a laminate.
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