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In-situ temperature field measurements and direct observation of crystal/melt at vertical Bridgman growth of lead chloride under stationary and dynamic arrangement Kral R, Nitsch K Journal of Crystal Growth, 427, 7, 2015 |
2 |
Study on crystal-melt interface shape of sapphire crystal growth by the KY method Liu WN, Lu JJ, Chen HJ, Yan WB, Min CH, Lian QQ, Wang YM, Cheng P, Liu CC, Xu YL Journal of Crystal Growth, 431, 15, 2015 |
3 |
Point defect behavior in Si crystal grown by electromagnetic Czochralski (EMCZ) method Kim KH, Sim BC, Choi IS, Lee HW Journal of Crystal Growth, 299(1), 206, 2007 |
4 |
Dislocation effect on crystal-melt interface: an in situ observation of the melting of silicon Wang YR, Kakimoto K Journal of Crystal Growth, 208(1-4), 303, 2000 |
5 |
Determination of supercooling in the presence of macrosteps on the growing facet of BGO Golyshev VD, Gonik MA, Tsvetovsky VB, Vasilev YV, Shlegel VN Journal of Crystal Growth, 216(1-4), 428, 2000 |
6 |
Analytical studies on the crystal-melt interface shape in the Czochralski process for oxide single crystals Jeong JH, Kang IS Journal of Crystal Growth, 218(2-4), 294, 2000 |
7 |
The effect of the melt/mould interface upon the As-cast surface solidification microstructure of Al4.5wt%Cu Gallerneault M, Luce ES Materials Science Forum, 331-3, 289, 2000 |
8 |
Transient phase-induced nucleation Sirota EB, Herhold AB Science, 283(5401), 529, 1999 |
9 |
The Effect of Matrix Molecular-Weight on the Kinetics of Formation of End-Adsorbed Polystyrene Layers from the Melt Clarke CJ, Jones RA, Clough AS Polymer, 37(17), 3813, 1996 |
10 |
High-Temperature Solutions of the (0.4Na(2)O-0.6B(2)O(3))-BaO-((6-X)Fe2O3+xcosno(3)) System - Physical-Properties Sole R, Ruiz X, Cabre R, Aguilo M, Diaz F, Nikolov V, Peshev P Materials Research Bulletin, 30(6), 779, 1995 |