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Temperature Dependence of the Refractive Index for the Mixtures {CH3(CH2)xOH, x=1, 2}+ {(CH3)2CH(CH2)yOH, y=0, 1, 2} and Estimation by Means of Cubic Equations of State

✍ Scribed by B. Orge; M. Iglesias; G. Marino; B. E. de Cominges; M. M. Piñeiro; J. Vijande


Book ID
110286975
Publisher
Springer Netherlands
Year
1999
Tongue
English
Weight
388 KB
Volume
56
Category
Article
ISSN
0022-5215

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📜 SIMILAR VOLUMES


Excess molar enthalpies of {x1CH3CH2COCH
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Excess molar enthalpies at the temperature 298.15 K were measured for CH2)nCH3} (n = 9, 12), and {x2CH3(CH2)4CH3 + (1-x2)CH3(CH2)n-2CH3} (n=9, 12), using a Calvet microcalorimeter. The experimental results were compared with those calculated by using the Nitta-and-Chao model.

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Excess molar volumes V E m of the ternary mixture {x1CH3(CH2)3OH+x2CH3(CH2)4CH3 + (1-x1-x2)CH3(CH2)3NH2} at the temperatures 298.15 K and 313.15 K, and the binary mixtures {xCH3(CH2)3OH + (1-x)CH3(CH2)3NH2}, {xCH3(CH2)4CH3 + (1-x)CH3(CH2)3NH2} at T=313.15 K have been determined from density measurem

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✍ M Iglesias; B Orge; J Tojo 📂 Article 📅 1995 🏛 Elsevier Science 🌐 English ⚖ 425 KB

Densities and refractive indices at the temperature 298.15 K of {x1CH3COCH3 + x2CH3OH + (1 -x1 -x2)CH3(CH2)4OH} and of the corresponding binary mixtures: {xCH3COCH3 + (1x)CH3(CH2)4OH}, and {xCH3OH + (1x)CH3(CH2)4OH}, have been determined experimentally as a function of the mole fraction at atmospher

Densities, refractive indices, and deriv
✍ J.M Canosa; A Rodrı́guez; M Iglesias; B Orge; J Tojo 📂 Article 📅 1997 🏛 Elsevier Science 🌐 English ⚖ 239 KB

## Densities and refractive indices of {x1CH3COOCH3 , and {xCH3OH + (1 -x)CH3CH(OH)CH3} have been determined experimentally as a function of the mole fraction(s) at the temperature 298.15 K and atmospheric pressure. A vibrating tube digital densimeter and an Abbe-type refractometer of synthetic s