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Silver nanowires without particles are synthesized by a solvothermal method at temperature 150 °C.
To generate the foam in the Berea sandstone core samples, experiments were performed with following method at temperature 96 °C and 1400 psi.
DLC films were deposited on the nitrocarburized AISI 4140 steel by the pulsed DC PACVD method at temperature range of 60 120 °C and in an atmosphere of hydrogen range of 0 40 sccm.
To comparative study on the growth behavior and structural properties of thin films, in this work, we have deposited the titanium oxide (TiO2) thin films on both Si(1 0 0) and Si(1 1 1) substrates using a single molecular precursor by metal-organic chemical vapor deposition method at temperature in the range of 600 750 °C and working pressure of 1.0×10−5 Torr.
Mixed liquor suspended solids (MLSS) and Mixed liquor volatile suspended solids (MLVSS) were measured by gravimetric method at temperature of 103 105°C and 550 ± 50°C in muffle furnace, respectively.
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Very recently, we have reported that MnSi~1.7 NWs can also be grown on the Si substrates with reactive epitaxy method at temperatures above approximately 500°C [20 22].
NiTe2 in the form of nanorods were successfully synthesised through solvothermal method at temperatures (160°C and 180°C for 10 and 15 h, respectively) (Bin et al. 1999).
The thermal conductivities of W/SiC clad, SiC/SiC and tungsten plates were characterized by a laser flash method at temperatures up to 773 K.
Gas concentrations have been systematically measured by the isochoric saturation method at temperatures from (303.15 to 363.15) K and pressures from the vapor pressure of solvent up to about 2.2 MPa.
The relative permittivity of HFC-143a in the liquid phase was measured using a direct capacitance method at temperatures from T = 218 to 294 K and at pressures up to P = 15 MPa, for a frequency of 10 kHz.
Adsorption equilibria of imidazolium-based ionic liquids (ILs), [Omim]Cl, [Hmim]Cl and [Bmim]Cl, onto activated carbon from aqueous solutions were measured using a dynamic fixed-bed method at temperatures from 303 to 323 K.
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