1331 - 1341 |
Addition of the sulfhydryl group (-SH) to the PPR78 model (predictive 1978, Peng-Robinson EOS with temperature dependent k(ij) calculated through a group contribution method) Privat R, Jaubert JN, Mutelet F |
1342 - 1345 |
Enthalpies of solution of N,N,N',N'-tetramethylurea in amides, dimethylsulphoxide, and acetone at 298.15 K Ivanov EV, Smirnov VI |
1346 - 1351 |
Osmotic coefficients of aqueous solutions of four ionic liquids at T = (313.15 and 333.15) K Gonzalez B, Calvar N, Dominguez A, Macedo EA |
1352 - 1357 |
Experimental test of the Sydney Young equation for the presentation of distillation curves Ott LS, Smith BL, Bruno TJ |
1358 - 1363 |
High-pressure phase behaviour of the binary system {CO2 + cis-decalin} from (292.75 to 373.75) K Vitu S, Jaubert JN, Pauly J, Daridon JL |
1364 - 1377 |
Effect of sodium phosphate salts on the thermodynamic properties of aqueous solutions of poly(ethylene oxide) 6000 at different temperatures Sadeghi R, Hosseini R, Jamehbozorg B |
1378 - 1385 |
Structural studies of cyclic ureas: 2. Enthalpy of formation of parabanic acid da Silva MDMCR, da Silva MAVR, Freitas VLS, Roux MV, Jimenez P, Davalos JZ, Cabildo P, Claramunt RM, Elguero J |
1386 - 1401 |
High-pressure densities and derived volumetric properties (excess, apparent, and partial molar volumes) of binary mixtures of {methanol (1) + [BMIM][BF4] (2)} Abdulagatov IM, Tekin A, Safarov J, Shahverdiyev A, Hassel E |
1402 - 1417 |
Volumetric behaviour of binary mixtures of (trichloromethane plus amines) at temperatures between T = (288.15 and 303.15) K at p=0.1 MPa Magalhaes JG, Torres RB, Volpe PLO |
1418 - 1421 |
Bubble point measurements of binary mixtures formed by ethyl benzene with selected compounds at 95.35 kPa Prasad TEV, Vasavi M, Jyotsna M, Jhansi V, Smitha G, Prasad DHL |
1422 - 1427 |
Volumetric and transport properties of binary liquid mixtures of N-methylacetamide with lactones at temperatures (303.15 to 318.15) K Boodida S, Bachu RK, Patwari MK, Nallani S |
1428 - 1432 |
Cyclic alkylene carbonates. Experiment and first principle calculations for prediction of thermochemical properties Verevkin SP, Emel'yanenko VN, Toktonov AV, Chernyak Y, Schaffner B, Borner A |
1433 - 1438 |
Thermophysical properties of 1-hexyl-3-methyl imidazolium based ionic liquids with tetrafluoroborate, hexafluorophosphate and bis(trifluoromethylsulfonyl)imide anions Muhammad A, Mutalib MIA, Wilfred CD, Murugesan T, Shafeeq A |
1439 - 1444 |
Kinetic and thermodynamic analysis of 10-hydroxy-camptothecin hydrolysis at physiological pH Kunadharaju S, Savva M |
1445 - 1450 |
A study on the protein concentration dependence of the thermodynamics of micellization Verdes PV, Blanco E, Ruso JM, Prieto G, Sarmiento F |
1451 - 1457 |
Thermochemical properties of three 2-thiophenecarboxylic acid derivatives da Silva MAVR, Santos AFLOM |
1458 - 1463 |
Phase transition thermodynamics of phenyl and biphenyl naphthalenes Rocha MAA, Lima CFRAC, Santos LMNBF |
1464 - 1474 |
Gas hydrate equilibrium dissociation conditions in porous media using two thermodynamic approaches Li XS, Zhang Y, Li G, Chen ZY, Yan KF, Li QP |
1475 - 1476 |
On the definition of the excess permittivity of a fluid mixture. II Iglesias TP, Reis JCR, Farina-Busto L |