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Exact(7)
Therefore, the ammonia will be solved into SCCO2 fluids with a mole concentration of 1.7 M in the reactive chamber.
Spray pyrolysis of heated (500°C) zinc acetate-ethanol solution (mole concentration of Al acetate within 0%to10%0%) yielded thin deposits.
As the mole concentration of copolymer is increased from 10%to50%0%, the microstructures formed by PCL-PDEA-PSBMA and DOX remains spherical micelles whereas PCL-PDEA-PEGMA undergoes structural transition from spherical to cylindrical and finally to lamellar micelles.
Table 1 Mole proportion of the different constituents in the prepared phases Sample code Mole concentration of constituents Ca/P ratio mole% Si to P- ion substituted HA mole% Si to P- HAs Ca P Si CO3 HAs 0.1 0.06 1.67 Si-HA 0.1 0.0585 0.03 1.71 51.28 50 Si-CHA 0.096 0.0509 0.0031 0.006 1.88 6.09 5.167 Figure 1 Flow chart of the method for HA preparation.
Nieva and Nieva ([1987]) developed the cation composition geothermometer; the relationship between cations is as follows: T K = 14, 990 7 log Na + K + + 2 log Ca 2 + Na + + 2 log Mg 2 + Na + 2 + 29.39 (7)where [x] is the mole concentration of species x (mol kg−1).He divided this equation into four subgroups, and according to this division our data fall in the first subgroup.
The adsorbed film thickness per bilayer is shown to be easily controlled from about 5 to 40 Å and proportional to constant power exponents of −0.34 and 0.78 with respect to the spinning speed and the mole concentration of polyelectrolytes, respectively.
Similar(53)
Where PHB and PTMA are the integrated peak area of R-3-HB at 1.12 ppm and TMA at 2.90 ppm, and MHB and MTMA are mole concentrations of R-3-HB and TMA respectively.
The PVA layer with different amounts of PMDA crosslinkeds were denoted as: M-a, M-b, M-c, M-d, and M-e, respectively, corresponding to 0%, 5 %, 10, 20% and 30% of the mole concentrations of –COOH group of the hydrolyzed PMDA molecule to the –OH group of the PVA molecule.
The effects of electrolyte temperature, current density and mole concentration ratios of [Ir3+]/([PtCl62−]+[Ir3+]), on the deposition rate, composition and crystallographic structures of Pt Ir alloy coatings are investigated.
Smooth and dense Pt Ir alloy coatings can be obtained at 1 andm2 and 353 K. Pt Ir alloy coatings with expected compositions can be readily fabricated by controlling the mole concentration ratios of [Ir3+]/([PtCl62−]+[Ir3+]) in the electrolyte.
EGCG, the most abundant and potent active compound in GTP [ 17], was used to calculate a series of mole concentrations to present the total GTP, but the overall results of this study were from total GTP.
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