Her research in Meteorology focuses on subjects like Atmospheric pressure, which are connected to Oceanography. Her research on Oceanography frequently connects to adjacent areas such as Atmospheric pressure. Her work on Thermodynamics is being expanded to include thematically relevant topics such as Viscosity, Isentropic process and Isobaric process. Her work in Viscosity is not limited to one particular discipline; it also encompasses Thermodynamics. Distillation is intertwined with Azeotrope and Ethanol in her research. In her works, Ángeles Domínguez conducts interdisciplinary research on Ethanol and Distillation. Many of her studies on Organic chemistry involve topics that are commonly interrelated, such as Chloride. She merges many fields, such as Catalysis and Physical chemistry, in her writings. Ángeles Domínguez merges many fields, such as Physical chemistry and Organic chemistry, in her writings.
Chromatography is intertwined with Extraction (chemistry) and Analytical Chemistry (journal) in her research. Extraction (chemistry) and Solvent are two areas of study in which Ángeles Domínguez engages in interdisciplinary research. Her study deals with a combination of Solvent and Ionic liquid. Her research ties Chromatography and Analytical Chemistry (journal) together. Ionic liquid and Ionic bonding are fields of study that overlap with her Ion research. She performs integrative Ionic bonding and Ion research in her work. With her scientific publications, her incorporates both Organic chemistry and Imide. Ángeles Domínguez combines Catalysis and Inorganic chemistry in her research. She integrates Inorganic chemistry and Catalysis in her studies.
Her study looks at the intersection of Environmental engineering and topics like Wastewater with Waste management. Her research combines Wastewater and Waste management. Research on Ionic bonding and Solvation is a part of her Ion study. She undertakes multidisciplinary studies into Ionic bonding and Ion in her work. Ángeles Domínguez undertakes multidisciplinary studies into Organic chemistry and Imide in her work. In her study, she carries out multidisciplinary Extraction (chemistry) and Chromatography research. While working on this project, she studies both Chromatography and Extraction (chemistry). Ángeles Domínguez integrates Catalysis and Solubility in her studies. Ángeles Domínguez performs integrative study on Solubility and Aqueous solution in her works.
Her Organic chemistry study frequently involves adjacent topics like Menthol. Many of her studies on Alloy involve topics that are commonly interrelated, such as Deep eutectic solvent. Deep eutectic solvent is often connected to Eutectic system in her work. Ángeles Domínguez undertakes multidisciplinary studies into Eutectic system and Alloy in her work. She performs multidisciplinary study on Extraction (chemistry) and Chromatography in her works. Ángeles Domínguez integrates Chromatography and Extraction (chemistry) in her studies. Ángeles Domínguez connects Betaine with Amino acid in her research. Amino acid and Betaine are two areas of study in which she engages in interdisciplinary research. Her research links Proline with Biochemistry.
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Physical properties of pure 1 -ethyl -3 -methylimidazolium ethylsulfate and its binary mixtures with ethanol and water at several temperatures
Elena Gómez;Begoña González;Noelia Calvar;and Emilia Tojo.
Journal of Chemical & Engineering Data (2006)
Density, dynamic viscosity, and derived properties of binary mixtures of methanol or ethanol with water, ethyl acetate, and methyl acetate at T=(293.15, 298.15, and 303.15) K
Begoña González;Noelia Calvar;Elena Gómez;Ángeles Domínguez.
The Journal of Chemical Thermodynamics (2007)
Dynamic Viscosities of a Series of 1-Alkyl-3-methylimidazolium Chloride Ionic Liquids and Their Binary Mixtures with Water at Several Temperatures
Elena Gómez;Begoña González;Ángeles Domínguez;and Emilia Tojo.
Journal of Chemical & Engineering Data (2006)
Physical Properties of Binary Mixtures of the Ionic Liquid 1-Methyl-3-octylimidazolium Chloride with Methanol, Ethanol, and 1-Propanol at T = (298.15, 313.15, and 328.15) K and at P = 0.1 MPa
Emilio J. Gonzalez;Luisa Alonso;Angeles Dominguez.
Journal of Chemical & Engineering Data (2006)
Physical properties of binary mixtures of the ionic liquid 1-ethyl-3-methylimidazolium ethyl sulfate with several alcohols at T = (298.15, 313.15, and 328.15) K and atmospheric pressure
Emilio J. González;Begoña González;and Noelia Calvar;Ángeles Domínguez.
Journal of Chemical & Engineering Data (2007)
Temperature Dependence and Structural Influence on the Thermophysical Properties of Eleven Commercial Ionic Liquids
Raquel G. Seoane;Sandra Corderí;Elena Gómez;Noelia Calvar.
Industrial & Engineering Chemistry Research (2012)
Vapor–Liquid Equilibria for the Ternary System Ethanol + Water + 1-Ethyl-3-methylimidazolium Ethylsulfate and the Corresponding Binary Systems Containing the Ionic Liquid at 101.3 kPa
Noelia Calvar;Begoña González;Elena Gómez;Ángeles Domínguez.
Journal of Chemical & Engineering Data (2008)
Esterification of acetic acid with ethanol: Reaction kinetics and operation in a packed bed reactive distillation column
Noelia Calvar;Begoña González;Ángeles Domínguez.
Chemical Engineering and Processing (2007)
Vapor−Liquid Equilibria for the Ternary System Ethanol + Water + 1-Butyl-3-methylimidazolium Chloride and the Corresponding Binary Systems at 101.3 kPa
Noelia Calvar;Begoña González;Elena Gómez;Ángeles Domínguez.
Journal of Chemical & Engineering Data (2006)
Study of the behaviour of the azeotropic mixture ethanol–water with imidazolium-based ionic liquids
Noelia Calvar;Begoña González;Elena Gómez;A. Domínguez.
Fluid Phase Equilibria (2007)
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