Publications

Found 103 results
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3
3D Lattice Boltzmann flow simulations through dendritic mushy zones, Ludwig, A, Kharicha A, Hölzl C, Domitner J, Wu M, and Pusztai Tamás , Engineering Analysis With Boundary Elements, Volume 41, (2014)
C
Cluster size from X-ray diffraction and magnetic measurements in Fe-Ag multilayers and FeZrBCu nanocrystals, Kiss, LF, Balogh J, Bujdosó L, Kaptás D, Kemény T, Pusztai Tamás, and Vincze I , Materials Science Forum, Volume 360-362, p.505-512, (2001)
Comparison of powder and single crystal data of C60(C14H10O2) an oxygen containing anthracene derivative of C60, Bortel, G, Oszlányi G, Faigel G, Tegze M, Pusztai Tamás, and Pekker S , Materials Science Forum, Volume 228-231, p.879-884, (1996)
The composition dependence of the structural and magnetic properties in Fe92-xBxZr7Cu1 nanocrystals, Kemény, T, Kaptás D, Kiss LF, Pusztai Tamás, Balogh J, and Vincze I , Journal of Magnetism and Magnetic Materials, Volume 215, p.268-271, (2000)
Consistent multiphase-field theory for interface driven multidomain dynamics, Tóth, Gyula, Pusztai Tamás, and Gránásy László , Physical Review B, Volume 92, p.184105, (2015)
A critical assessment of the classical kinetic approach to nucleation and growth, Gránásy, László, Pusztai Tamás, and James PF , Physics and Chemistry of Glasses, Volume 43C, p.270-280, (2002)
Critical comparison of modern theories of crystal nucleation in unary and binary systemsProceedings First International Symposium on Microgravity Research and Applications in Physical Sciences and Biotechnology, Gránásy, László, Börzsönyi T, Pusztai Tamás, and James PF , p.629-636, (2001)
Crystal growth kinetics as an architectural constraint on the evolution of molluscan shells, Schoeppler, Vanessa, Lemanis Robert, Reich Elke, Pusztai Tamás, Gránásy László, and Zlotnikov Igor , Proceedings of the National Academy of Sciences, Volume 116, Issue 41, p.20388-20397, (2019)
Crystal nucleation and growth in binary phase-field theory, Gránásy, László, Börzsönyi T, and Pusztai Tamás , Journal of Crystal Growth, Volume 237-239, p.1813-1817, (2002)
Crystal nucleation and growth of spherulites demonstrated by coral skeletons and phase-field simulations, Sun, Chang-Yu, Gránásy László, Stifler Cayla A., Zaquin Tal, Chopdekar Rajesh V., Tamura Nobumichi, Weaver James C., Zhang Jun A. Y., Goffredo Stefano, Falini Giuseppe, et al. , Acta Biomaterialia, Volume 120, p.277-292, (2021)
F
Formation of monomer, dimer and polymer phases in the A1C60 (A=K, Rb, Cs) system, Pusztai, Tamás, Faigel G, Gránásy László, and Tegze M , Physics and Chemistry of Fullerenes and Derivatives: Proceedings of The International Winterschool On Electronic Properties of Novel Materials, p.302-305, (1995)
Free energy of the bcc-liquid interface and the Wulff shape as predicted by the phase-field crystal model, Podmaniczky, Frigyes, Tóth Gyula, Pusztai Tamás, and Gránásy László , Journal of Crystal Growth, Volume 385, Issue 1, p.148-153, (2014)
From needle crystals to polycrystalline spherulites: a phase field study, Gránásy, László, Pusztai Tamás, Tegze György, Tóth Gyula, Warren James A., and Douglas Jack F. , Proceedings of Modeling of Casting, Welding and Advanced Solidification Processes - Xi, p.15-24, (2006)

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