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The ionic conductivity was measured using molten salt electrodes and by a complex impedance analysis using platinum electrodes.
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The solid and dash lines in Figure 4a are the SHCs of the molten salt measured using model Q20 of TA and model 7020 of EXSTAR, respectively.
The 290°C to 335°C temperature-averaged SHCs of the molten salt measured using model Q20 of TA and model 7020 of EXSTAR are similar (1.59 ± 0.031 and 1.60 ± 0.012 kJ/kg-K, respectively).
The surface tension of molten silicon was measured using both the oscillating drop method and an improved sessile drop method.
The rheological properties of blends of poly methyl methacrylate) (PMMA) and polystyrene (PS), forming two phases in the molten state, were measured using cone-and-plate and capillary rheometers.
The molten salt bath temperature was measured using a K-type thermocouple and was remained in 440 °C using a PID temperature controller.
The molten salt bath temperature was measured using a K-type thermocouple and was controlled by a PID temperature controller in determined temperature.
The cross mark at 0 vol.% is the SHC of the molten salt without doping with NPs (measured using model Q20 of TA).
The cross mark data at 0 vol.% in Figure 5 is the SHC of the molten salt without doping with NPs (measured using model Q20 of TA).
The tracer diffusion coefficients of the Cu and Cl species, in molten CuCl between 450°C and 750°C, were measured using a capillary technique.
The solubility of CO2 in the molten Na2CO3 K2CO3 eutectic mixture at 800 °C has been measured using a manometric method.
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