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Author:Zabransky, M.

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32 matching references were found.

Vesely, F.; Zabransky, M.; Svoboda, V.; Pick, J., The use of mixing calorimeter for measuring heat capacities of liquids, Coll. Czech. Chem. Commun., 1979, 44, 3529-3532. [all data]

Zabransky, M.; Hynek, V.; Finkeova-Hastabova, J.; Vesely, F., Heat capacities of six liquid esters as a function of temperature, Coll. Czech. Chem. Comm., 1987, 52, 251-256. [all data]

Vesely, F.; Zabransky, M.; Barcal, P.; Svoboda, V., Molar heat capacities of four liquid fluorinated and halogenated ethanes, J. Chem. Thermodynam., 1988, 20, 1283-1285. [all data]

Vesely, F.; Barcal, P.; Zabransky, M.; Svoboda, V., Heat capacities of 4-methyl-2-pentanone, 2,6-dimethyl-4-heptanone, 1-hexanol, 1-heptanol, and 1-octanol in the temperature range 298-318 K, Collect. Czech. Chem. Commun., 1989, 54, 602-607. [all data]

Svoboda, V.; Zabransky, M.; Barta, M., Molar heat capacities of 2-methoxyethanol, 2-ethoxyethanol, and 2-propoxyethanol in the temperature range from 298K to 330K, J. Chem. Thermodynam., 1991, 23, 711-712. [all data]

Svoboda, V.; Zabransky, M., Heat capacities of liquid 2,3,6-trimethylpyridine, 2,4,6-trimethylpyridine and 3-methoxypropionitrile within the range of temperatures of 300 to 328 K, Collect. Czech. Chem. Commun., 1991, 56(12), 2786-2790. [all data]

Polednicek, M.; Guetachew, T.; Jose, J.; Ruzicka, V.; Rohac, V.; Zabransky, M., Vapor pressures and sublimation pressures of dichlorobenzenes (1,2-,1,3-, and 1,4-), trichlorobenzenes (1,2,3- and 1,3,5-), and pentachlorobenzene, ELDATA: Int. Electron. J. Phys. Chem. Data, 1996, 2, 2, 41. [all data]

Oolednicek, M.; Guetachew, T.; Jose, J.; Ruzicka, V.; Rohae, V.; Zabransky, M., Vapor Pressures and Sublimation PRessures of Dichlorobenzenes(1,2-, 1,3-, ahd 1,4-) trichlorobenzenes(1,2,3- and 1,2,5-) and Pentachlorobenzenes, Int. Electron. J. Phys. Chem. Data, 1996, 2, 41-50. [all data]

Zabransky, M.; Ruzicka, J.; Majer, V.; Domalski, E.S., Critical Review and Recommended Values [In: J. Phys. Chem. Ref. Data, Monogr., 1996; 6(1)] in Heat Capacity of Liquids, Vol. I, ACS, Washington, 1996. [all data]

Chuchvalec, P.; Zabransky, M.; Lovland, J., A database application for phase equilibria information, Chem. Listy, 1995, 89, 721-3. [all data]

Ruzicka, V.; Zabransky, M.; Ruzicka, K.; Majer, V., Vapor Pressures for a Group of High-Boiling Alkylbenzenes under Environmental Conditions, Thermochmica Acta, 1994, 245, 121-4. [all data]

Bures, M.; Zabransky, M.; Svoboda, V., Dependence of molar heat capacity of liquid alkanols C3-C5 on their structure, Thermochim. Acta, 1994, 245, 145-53. [all data]

Ruzicka, V.; Zabransky, M.; Malijevsky, A.; Domalski, E.S., Correlation of heat capacities of liquids as a function of temperature, Fluid Phase Equilib., 1992, 75, 137-48. [all data]

Svoboda, V.; Zabransky, M.; Barta, M., Molar heat capacities of 2-methoxyethanol, 2-ethoxyethanol, and 2- propoxyethanol in the temperature range from 298 K to 330 K, J. Chem. Thermodyn., 1991, 23, 711-12. [all data]

Svoboda, V.; Zabransky, M., Heat capacities of liquid 2,3,6-trimethylpyridine, 2,4,6-trimethylpyridine and 3-methoxypropionitrile within the range of temperatures of 300 to 328 K, Collect. Czech. Chem. Commun., 1991, 56, 2786-90. [all data]

Ruzicka, V.; Zabransky, M.; Majer, V., Heat capacities of organic compounds in liquid state. II. C1 to C18 n- alkaneses, J. Phys. Chem. Ref. Data, 1991, 20, 405-44. [all data]

Zabransky, M.; Rozicka, V., Heat capacities of organosilicon compounds in the liquid state., Sb. Vys. Sk. Chem.-Technol. Praze, Fys. Chem., 1990, 10, 69. [all data]

Zabransky, M.; Ruzicka, V.; Majer, V., Heat capacities of liquid n-alkanes and 1-alkanols. Data correlation, Sb. Vys. Sk. Chem.-Technol. Praze, Fys. Chem., 1990, No. 10, 55-68. [all data]

Zabransky, M.; Ruzicka, V.; Majer, V.; Domalski, E.S., Critical compilation and temperature correlation of heat capacities of liquids: an IUPAC data project, Calorim. Anal. Therm., 1990, 20-21, 431-40. [all data]

Zabransky, M.; Ruzicka, V., Heat capacities of organosilicon compounds in the liquid state, Sb. Vys. Sk. Chem.-Technol. Praze, Fys. Chem., 1990, No. 10, 69-148. [all data]

Zabransky, M.; Ruzicka, V.; Majer, V., Heat capacities of organic compounds in the liquid state. I. C1 t C18 1- alkanols, J. Phys. Chem. Ref. Data, 1990, 19, 719-62. [all data]

Vesely, F.; Barcal, P.; Zabransky, M.; Svoboda, V., Heat capacities of 4-methyl-2-pentanone, 2,6-dimethyl-4-heptanone, 1-hexanol, 1-heptanol, and 1-octanol in the temperature range 298-31 K, Collect. Czech. Chem. Commun., 1989, 54, 602. [all data]

Zabransky, M.; Ruzicka, V.; Majer, V.; Domalski, E.S., Critical compilation of heat capacities of liquids in Physical Property Prediction in Organic Chemistry, CJochum, C; Hicks, M. G.; Sunkel, J., Eds., Springer, Berlin, 1988. [all data]

Zabransky, M.; Ruzicka, V.; Majer, V., Critical compilation of heat capacities of liquids, Sb. Vys. Sk. Chem.-Technol. Praze, Fys. Chem., 1988, 9, 161. [all data]

Vesely, F.; Barcal, P.; Zabransky, M.; Svoboda, V., Collect. Czech. Chem. Commun., 1988, 54, 602. [all data]

Vesely, F.; Zabransky, M.; Barcal, P.; Svoboda, V., Molar heat capacities of four liquid fluorinated and halogenated ethanes, J. Chem. Thermodyn., 1988, 20, 1283. [all data]

Ruzicka, V.; Zabransky, M., Data base of heat capacities of pure liquids, Chem. Prum., 1988, 38, 543. [all data]

Zabransky, M.; Hynek, V.; Finkeova-Hastabova, J.; Vesely, F., Heat capacities of six liquid esters as a function of temperature, Collect. Czech. Chem. Commun., 1987, 52, 251. [all data]

Vesely, F.; Uchytil, P.; Zabransky, M.; Pick, J., Heats of mixing of cyclohexane with 1-propanol and 2-propanol, Collect. Czech. Chem. Commun., 1979, 44, 2869. [all data]

Vesely, F.; Zabransky, M.; Svoboda, V.; Pick, J., The use of mixing calorimeter for measuring heat capacities of liquids, Collect. Czech. Chem. Commun., 1979, 44, 3529. [all data]

Majer, V.; Vonka, P.; Zabransky, M., Chem. Prum., 1978, 28, 561. [all data]

Svoboda, V.; Cejka, D.; Zabransky, M., Heat Capacities of Six Isomers of Pentanol in the Temperature Range from 303 K to 326 K, J. Chem. Thermodyn., 1994, 26, 147-50. [all data]