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Parallel performance is studied using approximately one million L-J atoms in the condensed, vaporized and supercritical states.
Three different cavities with the AR of 1, 2 and 4 are fabricated, and the heat transfer performance is studied using two different fluids namely de-ionised water and Al2O3/Water nanofluids.
The morphology of the resultant MoS2@CNFs is investigated by scanning electron microscopy, transmission electron microscopy and X-ray diffraction, while their electrochemical performance is studied using cyclic voltammetry and galvanostatic charge-discharge.
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The process performance was studied using statistical methods.
Thermal performance was studied using steady state approach by using Hot Guarded Plate apparatus.
The wettability and cell viability performance were studied using contact angle measurement and MTT assay.
The film transfer on the disc which was responsible for this performance was studied using SEM EDAX.
After successful cooling tests, the magnet performance was studied using DC and AC currents.
The microstructure and electrochemical performance were studied using X-ray diffraction, Raman spectrometer, scanning and electron microscopy techniques.
The microstructure and electrochemical performance were studied using X-ray diffraction, Raman spectrometer, SEM and TEM techniques.
The redox performance was studied using O2 temperature programmed desorption (O2-TPD) and H2 temperature programmed reduction (H2 –TPR).
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