화학공학소재연구정보센터
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No. Article
1 Apparent molar volumes and apparent molar heat capacities of aqueous adonitol, dulcitol, glycerol, meso-erythritol, myo-inositol, D-sorbitol, and xylitol at temperatures from (278.15 to 368.15) K and at the pressure 0.35 MPa
Blodgett MB, Ziemer SP, Brown BR, Niederhauser TL, Woolley EM
Journal of Chemical Thermodynamics, 39(4), 627, 2007
2 Thermodynamics of complexation of aqueous 18-crown-6 with rubidium and cesium ions: Apparent molar volumes and apparent molar heat capacities of aqueous (18-crown-6+rubidium chloride) and (18-crown-6+cesium chloride) at temperatures (278.15 to 393.15) K, at molalities (0.02 to 0.33) mol center dot kg-1, and at the pressure 0.35 MPa
Ziemer SP, Niederhauser TL, Woolley EM
Journal of Chemical Thermodynamics, 38(3), 323, 2006
3 Thermodynamics of proton dissociations from aqueous glycine at temperatures from 278.15 to 393.15 K, molalities from 0 to 1.0 mol center dot kg(-1), and at the pressure 0.35 MPa: Apparent molar heat capacities and apparent molar volumes of glycine, glycinium chloride, and sodium glycinate
Ziemer SP, Niederhauser TL, Merkley ED, Price JL, Sorenson EC, McRae B, Patterson BA, Origlia-Luster ML, Woolley EM
Journal of Chemical Thermodynamics, 38(4), 467, 2006
4 Thermodynamics of proton dissociations from aqueous serine at temperatures from (278.15 to 393.15) K, molalities from (0.01 up to 1.0) mol center dot kg(-1), and at the pressure 0.35 MPa: Apparent molar heat capacities and apparent molar volumes of serine, serinium chloride, and sodium serinate
Ziemer SP, Niederhauser TL, Merkley ED, Price JL, Sorenson EC, Mcrae BR, Patterson BA, Woolley EM
Journal of Chemical Thermodynamics, 38(5), 634, 2006
5 Thermodynamics of proton dissociations from aqueous alanine at temperatures from (278.15 to 393.15) K, molalities from (0.0075 to 1.0) mol center dot kg(-1), and at the pressure 0.35 MPa: Apparent molar heat capacities and apparent molar volumes of alanine, alaninium chloride, and sodium alaninate
Ziemer SP, Niederhauser TL, Price JL, Woolley EM
Journal of Chemical Thermodynamics, 38(8), 939, 2006
6 Apparent molar volumes and apparent molar heat capacities of aqueous urea, 1,1-dimethylurea, and N,N'-dimethylurea at temperatures from (278.15 to 348.15) K and at the pressure 0.35 MPa
Brown BR, Gould ME, Ziemer SP, Niederhauser TL, Woolley EM
Journal of Chemical Thermodynamics, 38(8), 1025, 2006
7 Apparent molar volumes and apparent molar heat capacities of aqueous D(+)-cellobiose, D(+)-maltose, and sucrose at temperatures from (278.15 to 393.15) K and at the pressure 0.35 MPa
Brown BR, Ziemer SP, Niederhauser TL, Woolley EM
Journal of Chemical Thermodynamics, 37(8), 843, 2005
8 Thermodynamics of complexation of aqueous 18-crown-6 with barium ion: apparent molar volumes and apparent molar heat capacities of aqueous (18-crown-6+barium nitrate) at temperatures (278.15 to 393.15) K, at molalities (0.02 to 0.33) mol center dot kg(-1), and at the pressure 0.35 MPa
Ziemer SP, Niederhauser TL, Woolley EM
Journal of Chemical Thermodynamics, 37(9), 984, 2005
9 Thermodynamics of complexation of aqueous 18-crown-6 with sodium ion: Apparent molar volumes and apparent molar heat capacities of aqueous (18-crown-6+sodium chloride) at temperatures (278.15 to 393.15) K, at molalities (0.02 to 0.30) mol center dot kg(-1), and at the pressure 0.35 MPa
Ziemer SP, Niederhauser TL, Woolley EM
Journal of Chemical Thermodynamics, 37(10), 1071, 2005
10 Apparent molar volumes and apparent molar heat capacities of aqueous lead nitrate at temperatures from 278.15 K to 393.15 K and at the pressure 0.35 MPa
Brown BR, Niederhauser TL, Merkley ED, Woolley EM
Journal of Chemical Thermodynamics, 36(2), 71, 2004