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The minimum and maximum values of the formation factor are 6 and 24, respectively.
We find that (i) the computed negative values of the formation enthalpy indicate that these superlattices are at least metastable.
Besides, the pH values of the formation water are positively correlated with the concentration of H2S in the condensate reservoirs, which may indicate that high pH might be another factor to promote and maintain TSR.
Values of the formation constants for the six species produced by the interaction between the Ni2+ ion and pyrazole are reported and these are used in further manipulataions of experimental data.
The pH values of the formation water are positively correlated with the H2S concentration in the condensate of the lower Ordovician dolomite reservoirs, which shows that high alkalinity of the formation water is another important factor to initiate and promote the TSR of sulfate-CIPs.
The high values of the formation constants Kf = 2.69 × 1011 for tizanidine while for orphenadrine Kf = 4.77 × 104reveals high stability of the formed complex, the negative value of ΔG = -6.52 × 104 and -2.67 × 104 (KJ/mole) for tizanidine and orphenadrine respectively, points to the spontaneous nature of the reaction [48].
Similar(52)
The effects of reaction time, temperature and pH value on the formation of HA nanotubes were investigated.
The smaller the value of the formation energy, the greater the stability of the structure.
It directly influences the pH value of the formation water with CO2 dissolved.
The calculated value of the formation energy of the substitution is 3.21 eV which is larger than the calculated cohesive energy of indium crystal (Ein), 2.52 eV.
The formal value of the formation constant for dichlorocuprate(I) in 50% v/v ethylene glycol water is given by log β2 = 5.8.
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