Excess volumes for (2-methylbutan-2-ol + n-heptane) and for (cyclopentanol + n-heptane)
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Materials Science,Atomic and Molecular Physics, and Optics
Reference23 articles.
1. Excess volumes for n-alkanols + n-alkanes I. Binary mixtures of methanol, ethanol, n-propanol, and n-butanol + n-heptane
2. Excess volumes for n-alkanols + n-alkanes II. Binary mixtures of n-pentanol, n-hexanol, n-octanol, and n-decanol + n-heptane
3. Excess volumes for n-alkanols + n-alkanes III. Binary mixtures of hexan-1-ol + n-pentane, + n-hexane, + n-octane, and + n-decane
4. Excess volumes for n-alkanols +n-alkanes IV. Binary mixtures of decan-1-ol +n-pentane, +n-hexane, +n-octane, +n-decane, and +n-hexadecane
5. Limiting partial molar volumes of ethanol, propan-1-ol, butan-1-ol, pentan-1-ol, and hexan-1-ol in n-heptane at 298.15 K
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2. Density and Viscosity of Ternary Mixture of Cyclopentanol + exo-Tetrahydrodicyclopentadiene + 1,3-Dimethyladamantane;Journal of Chemical & Engineering Data;2019-05-17
3. The Effect of the Molecular Size and Shape on the Volume Behavior of Binary Liquid Mixtures. Branched and Cyclic Alkanes in Heptane at 298.15 K;Journal of Solution Chemistry;2013-06-26
4. Thermodynamic study of (heptane+amine) mixtures. II. Excess and partial molar volumes at 298.15K;The Journal of Chemical Thermodynamics;2011-05
5. Molar heat capacities for (2-methyl-2-butanol+heptane) mixtures and cyclopentanol at temperatures from (284 to 353)K;The Journal of Chemical Thermodynamics;2009-03
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