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2005 4 Table S2 (cont.) 1,4-butanediol p /MPa m=0.25266 /mol kg-1 m=0.26786 /mol kg-1 m=0.29529 /mol kg-1 m=0.48784 /mol kg-1 0.1* 997.595 997.629 997.696 998.148 20.0 1006.251 1006.278 1006.332 1006.689 40.0 1014.613 1014.635 1014.676 1014.949 60.0 1022.655 1022.672 1022.703 1022.900 80.0 1030.399 1030.409 1030.431 1030.560 120.0 1045.067 1045.064 1045.071 1045.083 1,5-pentanediol m=0.07314 /mol kg-1 m=0.14913 /mol kg-1 m=0.36620 /mol kg-1 m=0.44095 /mol kg-1 0.1* 997.066 997.087 997.211 997.277 20.0 1005.804 1005.774 1005.760 1005.781 40.0 1014.240 1014.163 1014.024 1014.003 60.0 1022.347 1022.228 1021.978 1021.918 80.0 1030.148 1029.992 1029.640 1029.546 120.0 1044.911 1044.694 1044.170 1044.016 1,6-hexanediol m=0.06751 /mol kg-1 m=0.09216 /mol kg-1 m=0.29736 /mol kg-1 m=0.41309 /mol kg-1 0.1* 996.927 996.886 996.570 996.440 20.0 1005.658 1005.597 1005.121 1004.908 40.0 1014.086 1014.007 1013.387 1013.097 60.0 1022.187 1022.092 1021.342 1020.982 80.0 1029.982 1029.872 1029.005 1028.582 120.0 1044.734 1044.600 1043.531 1043.001 * Densities at p=0.1 MPa were measured using an Anton Paar 60/602 vibrating tube densimeter Supplementary Material for PCCP This journal is ? The Owner Societies
2005 5 Table S3. Calculated apparent molar volumes, Vφ2 /(cm3 mol-1 ), for selected aqueous alcohol and aqueous diol systems at fixed concentrations, p = (0.1, 20.0, 40.0, 60.0, 80.0, 120.0) MPa, and T = 298.15........