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Physical properties of the ternary system benzene-cyclohexane-hexane

Kenneth Ridgway, +1 more
- 01 Oct 1967 - 
- Vol. 12, Iss: 4, pp 509-515
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This article is published in Journal of Chemical & Engineering Data.The article was published on 1967-10-01. It has received 88 citations till now. The article focuses on the topics: Cyclohexane & Ternary numeral system.

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Equations of state for technical applications. III. Results for polar fluids

TL;DR: In this article, new functional forms have been developed for multiparameter equations of state for non-and weakly polar fluids and for polar fluids, which were established with an optimization algorithm which considers data sets for different fluids simultaneously.
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Equation-of-State mixing rules for multicomponent mixtures: the problem of invariance

TL;DR: In this article, the problem of invariance of higher-order polynomials for multicomponent mixtures has been investigated and a formulation to overcome it is proposed, which is applicable to other equations of state and to excess Gibbs-energy models for calculating activity coefficients.
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Extension of the PPR78 model (Predictive 1978, Peng-Robinson EOS with temperature dependent kij calculated through a group contribution method) to systems containing naphtenic compounds

TL;DR: Jaubert and Mutelet as mentioned in this paper developed a group contribution method aimed at estimating the temperature dependent binary interaction parameters (kij(T)) for the widely used Peng-Robinson equation of state.
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Thermodynamic consistency test of vapor-liquid equilibrium data: - Methanol ∼ water, benzene ∼ cyclohexane and ethyl methyl ketone ∼ water -

TL;DR: In this paper, a thermodynamic consistency test of vapor-liquid equilibrium data at low pressure has been proposed which permits the over-all check of the data by combining three tests; i) point test and ii) area test based on the generalized Gibbs-Duhem equation, and iii) infinite dilution test on the related thermodynamic equations.
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Co-Accretion of Chondrules and Dust in the Solar Nebula

TL;DR: In this article, a mechanism for chondrules to stick together by means of compaction of a porous dust rim they sweep up as they move through the dusty nebula gas is presented.
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