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Number of items: 6.

Ma, C. and Bothe, D. (2013):
Numerical modeling of thermocapillary two-phase flows with evaporation using a two-scalar approach for heat transfer.
In: Journal of Computational Physics, pp. 552-573, 233, [Article]

Ma, C. and Bothe, D. (2013):
Numerical modeling of thermocapillary two-phase flows using a two-scalar approach for heat transfer.
In: J. Comp. Physics, pp. 552-573, (233), [Article]

Ma, C. and Bothe, D. (2013):
Numerical modeling of thermocapillary two-phase flows with evaporation using a two-scalar approach for heat transfer.
In: Journal of Computational Physics, pp. 552-573, 233, ISSN 0021-9991,
[Online-Edition: http://dx.doi.org/10.1016/j.jcp.2012.09.011],
[Article]

Ma, C. and Bothe, D. (2011):
Direct Numerical Simulation of Thermocapillary Flow Based on the Volume of Fluid Method.
In: International Journal of Multiphase Flow, pp. 1045-1058, 37, (9), [Article]

Tan, Xiaoli and Frederick, Joshua and Ma, C. and Jo, Wook and Rödel, Jürgen (2010):
Can an Electric Field Induce an Antiferroelectric Phase Out of a Ferroelectric Phase?
In: Physical Review Letters, pp. 255702-1-255702-4, 105, (25), ISSN 0031-9007,
[Online-Edition: http://dx.doi.org/10.1103/PhysRevLett.105.255702],
[Article]

Tan, Xiaoli and Frederick, Joshua and Ma, C. and Aulbach, Emil and Marsilius, Mie and Hong, W. and Granzow, Torsten and Jo, Wook and Rödel, Jürgen (2010):
Electric-field-induced antiferroelectric to ferroelectric phase transition in mechanically confined Pb_{0.99}Nb_{0.02}[(Zr_{0.57}Sn_{0.43})_{0.94}Ti_{0.06}]_{0.98}O_{3}.
In: Physical Review B, pp. 014103-1-014103-5, 81, (1), ISSN 1098-0121,
[Online-Edition: http://dx.doi.org/10.1103/PhysRevB.81.014103],
[Article]

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