Speeds of Sound and Isentropic Compressibilities of n-Alkoxyethanols and Polyethers with Propylamine at 298.15 K
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[1] Shantilal Oswal,et al. Speeds of sound, isentropic compressibilities and excess molar volumes of an alkanol + cycloalkane at 303.15 K: II. Results for alkan-2-ols + cyclohexane and alkan-1-ols + methylcyclohexane and theoretical interpretation , 2004 .
[2] R. Gardas,et al. Acoustic, volumetric, compressibility and refractivity properties and reduction parameters for the ERAS and Flory models of some homologous series of amines from 298.15 to 328.15 K , 2004 .
[3] J. C. Reis,et al. Aggregative processes in aqueous solutions of mono- to tetra-ethylene glycol dimethyl ether at 298.15 K , 2004 .
[4] A. Wasiak,et al. Heat Capacities, Speeds of Sound, and Isothermal Compressibilities of Some n-Amines and Tri-n-amines at 298.15 K , 2002 .
[5] S. R. Patel,et al. Densities, Viscosities, Sound Speeds, and Excess Properties of Binary Mixtures of Methyl Methacrylate with Alkoxyethanols and 1-Alcohols at 298.15 and 308.15 K , 2000 .
[6] A. Pal,et al. Excess molar volumes and viscosities of binary mixtures of some polyethers with propylamine at 298.15 K , 2000 .
[7] A. Pal,et al. Excess molar volumes and viscosities of mixtures of some n-alkoxyethanols with dialkyl carbonates at 298.15 K , 1999 .
[8] J. González,et al. Excess molar volumes of methanol or ethanol + n-polyethers at 298.15 K , 1999 .
[9] J. González,et al. Excess molar volumes of 1-propanol + n-polyethers at 298.15 K , 1997 .
[10] A. Pal,et al. ULTRASONIC STUDIES OF WATER + ETHYLENE GLYCOL MONOISOPROPYL ETHER AT 298.15, 308.15 AND 318.15 K , 1997 .
[11] G. Douhéret,et al. Volumetric properties of binary mixtures of water with methoxy(ethoxy)nethanols , 1995 .
[12] J. Loya,et al. Ultrasonic speeds and isentropic functions of 2-(2-alkoxyethoxy)ethanol + water at 298.15 K , 1992 .
[13] Shantilal B. Oswal. Theoretical estimation of isentropic compressibility and speed of sound in binary liquid mixtures from the Prigogine-Flory-Patterson theory , 1990 .
[14] G. C. Benson,et al. Evaluation of excess isentropic compressibilities and isochoric heat capacities , 1979 .
[15] G. Perron,et al. The heat capacities and volumes of some low molecular weight amides, ketones, esters, and ethers in water over the whole solubility range , 1978 .
[16] G. Perron,et al. Model systems for hydrophobic interactions: Volumes and heat capacities ofn-alkoxyethanols in water , 1978 .
[17] V. A. D. Grosso,et al. Speed of Sound in Pure Water , 1972 .
[18] T. Tadros,et al. Thermodynamics in HCl in water-methylcellosolve mixtures—I. standard potentials of the silver/silver-chloride electrode , 1971 .
[19] Paul J. Flory,et al. Fifteenth Spiers Memorial Lecture. Thermodynamics of polymer solutions , 1970 .
[20] Arnold Weissberger,et al. Organic solvents;: Physical properties and methods of purification , 1970 .
[21] T. Litovitz,et al. Determination of Electrolyte Apparent Molal Compressibilities at Infinite Dilution Using a High‐Precision Ultrasonic Velocimeter , 1969 .
[22] Alarich Weiss,et al. Arnold Bondi: Physical Properties of Molecular Crystals, Liquids, and Glasses. John Wiley and Sons, New York, London, Sydney 1968. 502 Seiten. Preis: 175 s. , 1968, Berichte der Bunsengesellschaft für physikalische Chemie.
[23] P. Flory. Statistical Thermodynamics of Liquid Mixtures , 1965 .
[24] P. Flory,et al. The Thermodynamic Properties of Mixtures of Small, Nonpolar Molecules , 1965 .