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Original Articles

Excess Molar Volumes of Tetrahydrofuran with Ethyl Acrylate, Butyl Acrylate, Methyl Methacrylate, and Styrene at 298.15 K

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Pages 361-369 | Published online: 27 Oct 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

RenéD. Peralta, Ramiro Infante, Gladis Cortez & Jaime Wisniak. (2007) DENSITIES AND DERIVED THERMODYNAMIC PROPERTIES OF THE BINARY SYSTEMS OF BENZENE WITH BUTYL METHACRYLATE, ALLYL METHACRYLATE, METHACRYLIC ACID, AND VINYL ACETATE AT 298.15 K. Chemical Engineering Communications 194:5, pages 635-647.
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René D. Peralta, Ramiro Infante, Gladis Cortez & Jaime Wisniak. (2005) Density and other thermodynamic properties of the binary systems of tetrahydrofuran + ethenyl ethanoate, methacrylic acid, butyl methacrylate, and allyl methacrylate at 298.15 K. Physics and Chemistry of Liquids 43:3, pages 249-259.
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René D. Peralta, Ramiro Infante, Gladis Cortez & Jaime Wisniak. (2004) Volumetric properties of ethyl ethanoate with ethyl acrylate, butyl acrylate, methyl methacrylate, and styrene at 298.15 k. Physics and Chemistry of Liquids 42:4, pages 391-401.
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Articles from other publishers (12)

Felix Fiedler, Joel Karog, Eric W. Lemmon & Monika Thol. (2023) Fundamental Equation of State for Fluid Tetrahydrofuran. International Journal of Thermophysics 44:10.
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Anil Kumar Nain. (2021) Insight into intermolecular interactions in benzonitrile + methyl acrylate/ethyl acrylate/n-butyl acrylate/t-butyl acrylate binary mixtures at temperatures from 293.15 to 318.15 K: Ultrasonic and viscometric study. Journal of Molecular Liquids 331, pages 115599.
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Preeti Droliya & Anil Kumar Nain. (2017) Experimental and theoretical studies of acoustic and viscometric properties of binary mixtures of tetrahydrofuran with some alkyl acrylates at temperatures from 293.15 to 318.15 K. Journal of Molecular Liquids 241, pages 549-562.
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Anil Kumar Nain & Preeti Droliya. (2017) Temperature and concentration dependence of volumetric properties of (tetrahydrofuran + methyl acrylate, or + ethyl acrylate, or + n -butyl acrylate, or + tert -butyl acrylate) binary mixtures. The Journal of Chemical Thermodynamics 105, pages 317-326.
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Jaime Wisniak, Gladis Cortez, René D. Peralta, Ramiro Infante, Luis E. Elizalde, Tláloc A. Amaro, Omar García & Homero Soto. (2012) Volumetric Properties of the Ternary System Dimethyl Carbonate + Butyl Methacrylate + Allyl Methacrylate and Its Binary Butyl Methacrylate + Allyl Methacrylate at 293.15 K and p=101.325 kPa. Journal of Solution Chemistry 41:9, pages 1631-1648.
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P. Madhusudhana Reddy, K. Siva kumar & P. Venkatesu. (2011) Densities and ultrasonic studies for binary mixtures of tetrahydrofuran with chlorobenzenes, chlorotoluenes and nitrotoluenes at 298.15K. Fluid Phase Equilibria 310:1-2, pages 74-81.
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Jaime Wisniak, Gladis Cortez, Ren? D. Peralta, Ramiro Infante, Luis E. Elizalde, Tl?loc A. Amaro, Omar Garc?a & Homero Soto. (2008) Density, excess volume, and excess coefficient of thermal expansion of the binary systems of dimethyl carbonate with butyl methacrylate, allyl methacrylate, styrene, and vinyl acetate at T=(293.15, 303.15, and 313.15)K. The Journal of Chemical Thermodynamics 40:12, pages 1671-1683.
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Jaime Wisniak, Gladis Cortez, René D. Peralta, Ramiro Infante & Luis E. Elizalde. (2007) Some Thermodynamic Properties of the Binary Systems of Toluene with Butyl Methacrylate, Allyl Methacrylate, Methacrylic Acid and Vinyl Acetate at 20, 30 and 40 °C. Journal of Solution Chemistry 36:8, pages 997-1022.
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Jaime Wisniak, René D. Peralta, Ramiro Infante, Gladis Cortez & R.G. López. (2005) Densities, isobaric thermal compressibilities and derived thermodynamic properties of the binary systems of cyclohexane with allyl methacrylate, butyl methacrylate, methacrylic acid, and vinyl acetate at t=(298.15 and 308.15)K. Thermochimica Acta 437:1-2, pages 1-6.
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Jaime Wisniak, Ren? D. Peralta, Ramiro Infante & Gladis Cortez. (2005) Densities and derived thermodynamic properties of the binary systems of 1,1-dimethylethyl methyl ether with allyl methacrylate, butyl methacrylate, methacrylic acid, and vinyl acetate at T=(298.15 and 308.15)K. The Journal of Chemical Thermodynamics 37:7, pages 729-736.
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R. D. Peralta, R. Infante, G. Cortez & J. Wisniak. (2005) Volumetric Properties of 3-Methylbutyl Ethanoate with Ethyl Acrylate, Butyl Acrylate, Methyl Methacrylate, and Styrene at 25°C. International Journal of Thermophysics 26:3, pages 679-692.
Crossref
René D. Peralta, Ramiro Infante, Gladis Cortez, Luis E. Elizalde & Jaime Wisniak. (2004) Density, excess volumes and partial volumes of the systems of p-xylene+ethyl acrylate, butyl acrylate, methyl methacrylate, and styrene at 298.15K. Thermochimica Acta 421:1-2, pages 59-68.
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