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Convection modeling in directional solidification = Modélisation de la convection au cours de la solidification directionnelleHEINRICH, Juan C; POIRIER, David R.Comptes rendus. Mécanique. 2004, Vol 332, Num 5-6, pp 429-445, issn 1631-0721, 17 p.Article

Crystal growth under microgravity: present results and future prospects towards the International Space StationBENZ, K. W; DOLD, P.Journal of crystal growth. 2002, Vol 237-39, pp 1638-1645, issn 0022-0248, 3Conference Paper

Crystallization from a molten zone and pendant drop under supercooling conditionsKIMURA, H; MIYAZAKI, A.Journal of crystal growth. 2002, Vol 237-39, pp 1835-1839, issn 0022-0248, 3Conference Paper

Catalyzed nucleation under microgravity conditions : results with a model glassREISS, H; MÜLLER, M; PASCOVA, R et al.Journal of crystal growth. 2001, Vol 222, Num 1-2, pp 328-342, issn 0022-0248Article

An attempt of in situ observation of crystallization phenomena under the micro gravitySHIMIZU, K; TSUKAMOTO, K; MARUYAMA, S et al.Kagaku kōgaku ronbunshū. 1998, Vol 24, Num 3, pp 523-525, issn 0386-216XArticle

Crystal growth under reduced gravityBENZ, K. W.Progress in crystal growth and characterization of materials. 1993, Vol 26, pp 267-284, issn 0960-8974Article

Melt motions during unidirectional solidification of Al-Al3Ni eutecticsBARCZY, P; MERTINGER, V; GACSI, Z et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 1993, Vol 173, Num 1-2, pp 137-141, issn 0921-5093Conference Paper

Morphological instability on an ice crystal growing in supercooled waterFURUKAWA, Yoshinori; YOKOYAMA, Etsuro; SHIMADA, Wataru et al.Studies on crystal growth under microgravity. 2005, pp 165-186, isbn 81-308-0025-X, 1Vol, 22 p.Book Chapter

Recent developments in Liquid Phase Electroepitaxial growth of bulk crystals under magnetic field = Développements récents en cristallogénèse par Electro-Epitaxie en Phase Liquide (LPEE) sous l'effet d'un champ magnétiqueDOST, Sadik; LENT, Brian; SHEIBANI, Hamdi et al.Comptes rendus. Mécanique. 2004, Vol 332, Num 5-6, pp 413-428, issn 1631-0721, 16 p.Article

An emulation system for melting zone semiconductor single crystal growth in spaceCHAORONG LI; PEWEN GE; YUZHANG PANG et al.Crystal research and technology (1979). 2003, Vol 38, Num 7-8, pp 734-739, issn 0232-1300, 6 p.Article

Drop experiments on crystallization of InGaSb semiconductorHAYAKAWA, Y; BALAKRISHNAN, K; DAO, Le H et al.Journal of crystal growth. 2002, Vol 237-39, pp 1831-1834, issn 0022-0248, 3Conference Paper

Features of mass transfer for the laminar melt flow along the interfaceBYKOVA, S. V; GOLYSHEV, V. D; GONIK, M. A et al.Journal of crystal growth. 2002, Vol 237-39, pp 1886-1891, issn 0022-0248, 3Conference Paper

Experimental measurement of temperature distribution across a loop-like heaterXINAN LIANG; WEIQING JIN; ZHILEI PAN et al.Progress in crystal growth and characterization of materials. 2000, Vol 40, Num 1-4, pp 301-307, issn 0960-8974Conference Paper

Effects of microgravity on Hg1-xCdxTe/(100)CdTe epitaxy by CVT under transient growth conditionsWIEDEMEIER, H; GE, Y.-R; HUTCHINS, M. A et al.Journal of crystal growth. 1998, Vol 187, Num 1, pp 72-80, issn 0022-0248Article

Improvement of stoichiometry in semi-insulating gallium arsenide grown under microgravityLANYING LIN; XINGRU ZHONG; NUOFU CHEN et al.Journal of crystal growth. 1998, Vol 191, Num 3, pp 586-588, issn 0022-0248Article

New crystallization systems envisioned for microgravity studiesBRAY, T. L; KIM, L. J; ASKEW, R. P et al.Journal of applied crystallography. 1998, Vol 31, pp 515-522, issn 0021-8898, 4Article

Gravity-dependent silicon crystal growth using a laser heating system in drop shaftNAKATA, J; INAGAWA, I; YAMAMOTO, K et al.Japanese journal of applied physics. 1994, Vol 33, Num 9A, pp L1202-L1204, issn 0021-4922, 2Article

Materials research in low gravity (San Diego CA, 28-29 July 1997)Narayanan Ramachandran.SPIE proceedings series. 1997, isbn 0-8194-2545-1, IX, 290 p, isbn 0-8194-2545-1Conference Proceedings

On the reaction between Fe-Ti and Fe-C liquids under microgravityLIU, Z; FREDRIKSSON, H.Metallurgical and materials transactions. A, Physical metallurgy and materials science. 1996, Vol 27, Num 2, pp 407-414, issn 1073-5623Article

Relaxation behavior in a solution system for crystal growth under microgravityCHONGRU HUO; ZHENGYI XU; WEIDONG HUANG et al.Journal of crystal growth. 1996, Vol 158, Num 3, pp 359-368, issn 0022-0248Article

Investigation of CdTe:Cl grown from the vapour phase under microgravity conditions with time dependent charge measurements and photoinduced current transient spectroscopyEICHE, C; JOERGER, W; FIEDERLE, M et al.Journal of crystal growth. 1995, Vol 146, Num 1-4, pp 98-103, issn 0022-0248Conference Paper

Morphological stability of a solid-liquid interface and cellular growth : Insights from thermoelectric measurements in microgravity experimentsGARANDET, J. P; BOUTET, G; BILLIA, B et al.Journal of crystal growth. 2005, Vol 279, Num 1-2, pp 195-205, issn 0022-0248, 11 p.Article

Scanning tunneling microscopy studies of the growth of Cu clusters on a reconstructed TiO2(1 10)-(1 x 2) surfaceREDDIC, J. E; ZHOU, J; CHEN, D. A et al.Surface science. 2001, Vol 494, Num 1, pp L767-L772, issn 0039-6028Article

Preparation and remote control of microgravity experimentsFORTEZZA, Raimondo; CEGLIA, Enrico.Materials chemistry and physics. 2000, Vol 66, Num 2-3, pp 110-119, issn 0254-0584Conference Paper

Containerless solidification processing in microgravity using drop tube system filled with bubbles (DTS-B)YOSHIDA, J; JOH, Y; IWASAKI, H et al.Journal of materials science letters. 2000, Vol 19, Num 4, pp 311-314, issn 0261-8028Article

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