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The variation of thermodynamic properties; heat capacity, entropy, and enthalpy of the present compound at different temperatures are calculated using NIST thermodynamical function program and interpreted.
Molar enthalpies of dissolution of the compound at different concentrations m /(mol · kg 1) were measured by an isoperibol solution reaction calorimeter at T = 298.15 K.
Molar enthalpies of dissolution of the compound at different molalities in the double-distilled water were measured with an isoperibol solution-reaction calorimeter at T = 298.15 K.
In this study, three different ANN architectures: multilayer perceptron (MLP), Elman network and generalized regression neural network (GRNN) were used for modelling cure curves of a selected rubber compound at different temperatures.
On the basis of theoretical vibrational analyses, the thermodynamic properties (standard heat capacities, standard entropies, and standard enthalpy changes) of the title compound at different temperatures have been calculated, revealing the correlations between C0p,m, S0m, ΔH0m and temperatures.
The molar enthalpies of dissolution of the compound at different concentrations m/(mol · kg−1) at T = 298.15 K were measured by an isoperibol solution-reaction calorimeter at T = 298.15 K.
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It was found that the three adsorbents are capable of effectively removing sulfur compounds at different feed sulfur concentrations.
In declaring the state of emergency, Peru's environment ministry said tests in February and March found high levels of barium, lead, chrome and petroleum-related compounds at different points in the Pastaza valley.
To propose a comprehensive, reliable, and predictive model, 18298 data belonging to experimental surface tension values of 1604 chemical compounds at different temperatures are studied.
The values of apparent relative molar enthalpies, relative partial molar enthalpies of the solvent and the compounds at different molalities were derived from the experimental values of molar enthalpies of dissolution of the compounds.
The developed multiscale theoretical approach allows to analyze the master curves across the 20 decades of frequencies and to investigate the effects of the filler particles on the relaxation processes in simple rubber compounds at different time scales.
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