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 Decade: 2010-2019
 Year: 2013
 Collection: UNT Scholarly Works
Response to "A critique of Abraham and Acree's correlation for deca-1,9-diene/water partition coefficients"

Response to "A critique of Abraham and Acree's correlation for deca-1,9-diene/water partition coefficients"

Date: February 1, 2013
Creator: Abraham, M. H. (Michael H.) & Acree, William E. (William Eugene)
Description: This article is a response to "A critique of Abraham and Acree's correlation for deca-1,9-diene/water partition coefficients," published in New Journal of Chemistry, 2013.
Contributing Partner: UNT College of Arts and Sciences
Analysis of immobilized artificial membrane retention factors for both neutral and ionic species

Analysis of immobilized artificial membrane retention factors for both neutral and ionic species

Date: July 12, 2013
Creator: Abraham, M. H. (Michael H.); Acree, William E. (William Eugene); Fahr, Alfred & Liu, Xiangli
Description: Article on the analysis of immobilized artificial membrane retention factors for both neutral and ionic species.
Contributing Partner: UNT College of Arts and Sciences
Determination of solvation descriptors for terpene hydrocarbons from chromatographic measurements

Determination of solvation descriptors for terpene hydrocarbons from chromatographic measurements

Date: February 2013
Creator: Abraham, M. H. (Michael H.); Gola, Joelle R. M.; Gil-Lostes, Javier; Acree, William E. (William Eugene) & Cometto-Muñiz, J. Enrique
Description: This article discusses the determination of solvation descriptors for terpene hydrocarbons from chromatographic measurements.
Contributing Partner: UNT College of Arts and Sciences
Comments Regarding "Study of Molecular Interactions in Binary Mixtures of Formamide with 2-Methoxyethanol and 2-Ethoxyethanol at Varying Temperatures"

Comments Regarding "Study of Molecular Interactions in Binary Mixtures of Formamide with 2-Methoxyethanol and 2-Ethoxyethanol at Varying Temperatures"

Date: June 3, 2013
Creator: Acree, William E. (William Eugene)
Description: This article provides comments on "Study of Molecular Interactions in Binary Mixtures of Formamide with 2-Methoxyethanol and 2-Ethoxyethanol at Varying Temperatures," published in 'Physics and Chemistry of Liquids,' 2013.
Contributing Partner: UNT College of Arts and Sciences
IUPAC-NIST Solubility Data Series. 98. Solubility of Polycyclic Aromatic Hydrocarbons in Pure and Organic Solvent Mixtures: Revised and Updated. Part 1. Binary Solvent Mixtures

IUPAC-NIST Solubility Data Series. 98. Solubility of Polycyclic Aromatic Hydrocarbons in Pure and Organic Solvent Mixtures: Revised and Updated. Part 1. Binary Solvent Mixtures

Date: February 28, 2013
Creator: Acree, William E. (William Eugene)
Description: Article on the solubility of polycyclic aromatic hydrocarbons in pure and organic solvent mixtures. This work updates volumes 54, 58, and 59 in the IUPAC Solubility Data Series and presents solubility data for polycyclic aromatic hydrocarbon solutes dissolved in binary organic solvent mixtures.
Contributing Partner: UNT College of Arts and Sciences
IUPAC-NIST Solubility Data Series. 98. Solubility of Polycyclic Aromatic Hydrocarbons in Pure and Organic Solvent Mixtures: Revised and Updated. Part 2. Ternary Solvent Mixtures

IUPAC-NIST Solubility Data Series. 98. Solubility of Polycyclic Aromatic Hydrocarbons in Pure and Organic Solvent Mixtures: Revised and Updated. Part 2. Ternary Solvent Mixtures

Date: February 28, 2013
Creator: Acree, William E. (William Eugene)
Description: Article on the solubility of polycyclic aromatic hydrocarbons in pure and organic solvent mixtures. This work updates volumes 54, 58, and 59 in the IUPAC Solubility Data Series and presents solubility data for polycyclic aromatic hydrocarbon solutes dissolved in ternary organic solvent mixtures.
Contributing Partner: UNT College of Arts and Sciences
IUPAC-NIST Solubility Data Series. 98. Solubility of Polycyclic Aromatic Hydrocarbons in Pure and Organic Solvent Mixtures-Revised and Updated. Part 3. Neat Organic Solvents

IUPAC-NIST Solubility Data Series. 98. Solubility of Polycyclic Aromatic Hydrocarbons in Pure and Organic Solvent Mixtures-Revised and Updated. Part 3. Neat Organic Solvents

Date: March 4, 2013
Creator: Acree, William E. (William Eugene)
Description: Article on the solubility of polycyclic aromatic hydrocarbons in pure and organic solvent mixtures. This work updates volumes 54, 58, and 59 in the IUPAC Solubility Data Series and presents solubility data for polycyclic aromatic hydrocarbon solutes dissolved in neat organic solvents.
Contributing Partner: UNT College of Arts and Sciences
IUPAC-NIST Solubility Data Series. 99. Solubility of Benzoic Acid and Substituted Benzoic Acids in Both Neat Organic Solvents and Organic Solvent Mixtures.

IUPAC-NIST Solubility Data Series. 99. Solubility of Benzoic Acid and Substituted Benzoic Acids in Both Neat Organic Solvents and Organic Solvent Mixtures.

Date: May 15, 2013
Creator: Acree, William E. (William Eugene)
Description: Article on the solubility of benzoic acid and substituted benzoic acids in both neat organic solvents and organic solvent mixtures.
Contributing Partner: UNT College of Arts and Sciences
Comments Regarding "Density, Speed of Sound, Refractive Index and Derivatives Properties of the Binary Mixture N-Hexane + N-Heptane (or N-Octane or N-Nonane), T = 288.15 - 313.15 K"

Comments Regarding "Density, Speed of Sound, Refractive Index and Derivatives Properties of the Binary Mixture N-Hexane + N-Heptane (or N-Octane or N-Nonane), T = 288.15 - 313.15 K"

Date: April 9, 2013
Creator: Acree, William E. (William Eugene) & Stephens, Timothy W.
Description: This article offers comment on "Density, speed of sound, refractive index and derivatives properties of the binary mixture N-Hexane + N-Heptane (or N-Octane or N-Nonane), T=288.15 - 313.15 K."
Contributing Partner: UNT College of Arts and Sciences
Bambina mattina

Bambina mattina

Date: July 27, 2013
Creator: Adriano, Domenico
Description: This book is a collection of poetry in Italian and translated into English and French.
Contributing Partner: UNT College of Arts and Sciences
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