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3 Sep 11 - 19 Sep 19
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D 1 - Fluid Dynamics
D 2 - Thermodynamics
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Ing. Barbora Planková
Phone
+420 266 052 030
E-mail
plankova@it.cas.cz
Room
M2206
Department
Department D 2 - Thermodynamics
Position
PhD student
Research area
mathematical modelling of phase interfaces
Curriculum vitae
Education
2011 (Ing.)
Faculty of Nuclear Sciences and Physical Engineering CTU in Prague, programme Mathematical Engineering (Ing. is an equivalent of M.Sc.)
Experience
2011-
Institute of Thermomechanics ASCR, v. v. i.
View author's publications in the ASCR database
Selected publications
Hrubý J, Planková B., Vinš V.: Corrections to the Classical Work of Formation of Critical Clusters, 19th International Conference on Nucleation and Atmospheric Aerosols 2013, 24.-28.6. 2013 Fort Collins (USA), Conference Proceedings 1527, 39-42, ISBN 978-0-7354-1152-4
Planková B., Hrubý J., Vinš, V.: Prediction of the Homogeneous Droplet Nucleation by the Density Gradient Theory and PC-SAFT Equation of State, 19th International Conference on Nucleation and Atmospheric Aerosols 2013, 24.-28.6. 2013 Fort Collins (USA), Conference Proceedings 1527, 101-104, ISBN 978-0-7354-1152-4
Vinš, V., Planková B., Hrubý J.: Surface tension of binary mixtures including polar components modeled by the density gradient theory combined with the PC-SAFT equation of state, International Journal of Thermophysics 34, 792-812, 2013
Planková B., Hrubý J., Vinš, V.: Homogeneous droplet nucleation modeled using the gradient theory combined with the PC-SAFT equation of state, international conference Experimental Fluid Mechanics 2012, 21.-23.11.2012 Hradec Králové (CZ), Conference Proceedings, 582-589, ISBN 978-80-7372-912-7
Vinš, V., Hrubý J., Planková B.: Surface tension of binary mixtures including polar components modeled by the density gradient theory combined with the PC-SAFT equation of state, international conference 19th European Conference on Thermophysical Properties, 28.8.-1.9.2011 Thessaloniki (Greece).
Vinš, V., Hrubý J., Planková B.: Droplet and Bubble Nucleation Modeled by Density Gradient Theory - Cubic Equation of State versus SAFT Model, international conference Experimental Fluid Mechanics 2010, 24.-26.11.2010 Liberec (CZ) Conference Proceedings Volume 2, S. 795-804, ISBN 978-80-7372-670-6.
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