Excess molar volumes V E m of [x(BrCH2Cl or BrCH2CH2Cl) + (1x){CH3(CH2)5CH3 or c-(CH2)6 or C6H6 or CCl4}] have been determined from density measurements at the temperature 298.15 K, using a vibrating-tube densimeter. Excess molar volumes V E m for these mixtures are positive, but noticeably less pos
Excess molar volumes in {octylamine + (hexane + heptane), or (cyclohexane + hexane), or (cyclohexane + heptane)} at the temperature 298.15 K
β Scribed by Isamu Nagata; Kazuhiro Tamura
- Publisher
- Elsevier Science
- Year
- 1997
- Tongue
- English
- Weight
- 176 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0021-9614
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β¦ Synopsis
Excess molar volumes V E m , measured at the temperature 298.15 K in an Anton-Paar densimeter, are reported for {xC6H14
The experimental results have been correlated with polynomial equations.
π SIMILAR VOLUMES
The densities of the mixtures (hexane or cyclohexane+propan-2-ol or butan-2-ol) at the temperatures (288.15 and 298.15) K have been measured using a vibrating-tube densitometer. Excess molar volumes V E m were calculated. The results were described by means of the ERAS model. All mixtures exhibit po
The (liquid+liquid) equilibria of ( x1CH3CN+x2c and {x1CH3OH+x2CH3CN+x3c-C6H12+(1-x1-x2-x3)CH3(CH2)5CH3} have been measured at the temperature 298.15 K. The experimental values have been well correlated with extended UNIQUAC and modified Wilson models having binary, ternary, and quaternary paramete
Excess molar volumes V E m at the temperature 298.15 K were obtained as a function of mole fraction ] from measurements of the density by using an Anton-Paar densimeter. Empirical equations have been fitted to the results for both ternary mixtures. The possibilities of predicting excess molar volum