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Experiments on directed crystallization in indium antimonide ampoules on Kosmos-1744 and Photon satellitesZEMSKOV, V. S; RAUKHMAN, M. R; KOZITSINA, E. A et al.Fizika i himiâ obrabotki materialov. 1991, Num 5, pp 46-52, issn 0015-3214Article

Free volume driven crystallization in metallic glasses = Cristallisation produite par le volume libre dans les verres métalliquesBARANDIARAN, J. M; TELLERIA, I; RIVACOBA, A et al.Thermochimica acta. 1983, Vol 63, Num 2, pp 255-260, issn 0040-6031Article

The influence of disorder on the superconductivity transition temperature of simple amorphous metals. IIIKRASNY, YU. P; KOVALENKO, N. P.Physica B, Condensed matter. 1990, Vol 162, Num 2, pp 128-132, 5 p.Article

Spatially-resolved photoluminescence study of InP : Fe substrates from different suppliersBRUINES, J. J. P; LE BRIS, J; RENAUD, M et al.Journal of crystal growth. 1990, Vol 102, Num 4, pp 769-774, issn 0022-0248Article

Crystallization kinetics of the amorphous alloy Fe80B20 studied using a thermomagnetic balance = Cinétique de la cristallisation de l'alliage amorphe Fe80B20 étudiée en utilisant une balance thermomagnétiqueBUDUROV, S; SPASSOV, T; MARKOV, T et al.Journal of materials science. 1986, Vol 21, Num 7, pp 2553-2556, issn 0022-2461Article

Glass transition in isopentane: a Monte Carlo studyYASHONATH, S; RAO, K. J; RAO, C. N. R et al.Physical review. B, Condensed matter. 1985, Vol 31, Num 5, pp 3196-3198, issn 0163-1829Article

Amorphisation de la structure des métaux et alliages présentant un degré de déformation plastique extrêmement élevéPAVLOV, V. A.Fizika metallov i metallovedenie. 1985, Vol 59, Num 4, pp 629-649, issn 0015-3230Article

Cinétique de cristallisation des métaux amorphesKUDINOV, G. M.Fizika metallov i metallovedenie. 1985, Vol 60, Num 6, pp 1081-1087, issn 0015-3230Article

A15-Nb3Si produced by transformation from amorphous state at high pressures and temperatures = Nb3SiA15 produit par transformation à partir de l'état amorphe à pression et température élevéesIWASAKI, H.Science Reports of the Research Institutes, Tohoku University. Series A, Physics, Chemistry and Metallurgy. 1983, Vol 31, Num 1, pp 1-15, issn 0040-8808Article

Sodium intercalation into WO2CI2BRUCE, P. G; NOWINSKI, J; GIBSON, V. C et al.Journal of solid state chemistry (Print). 1990, Vol 89, Num 1, pp 202-207, issn 0022-4596Article

Amorphization of crystalline CuTi : roles of chemical disordering and nonequilibrium lattice defectsSABOCHICK, M. J; LAM, N. G.Scripta metallurgica. 1990, Vol 24, Num 3, pp 565-570, issn 0036-9748Article

Peculiar chirality in a hydrothermally synthesized one-dimensional molybdenum phosphate polymer : structure of (Et4N)2[Mo4O8(PO4)2/2(H1.5PO4)2].2H2OMUNDI, L. A; HAUSHALTER, R. C.Journal of the American Chemical Society. 1991, Vol 113, Num 16, pp 6340-6341, issn 0002-7863Article

A structural investigation of phosphorus oxynitride glassesBOUKBIR, L; MARCHAND, R; LAURENT, Y et al.Journal of solid state chemistry (Print). 1990, Vol 87, Num 2, pp 423-429, issn 0022-4596Article

Temperature transients in heavily doped and undoped silicon using rapid thermal annealingSEIDEL, T. E; LISCHNER, D. J; PAI, C. S et al.Journal of applied physics. 1985, Vol 57, Num 4, pp 1317-1321, issn 0021-8979Article

PREDICTION OF GLASS-FORMING ABILITY FOR METALLIC SYSTEMSDONALD IW; DAVIES HA.1978; J. NON-CRYST. SOLIDS; NLD; DA. 1978; VOL. 30; NO 1; PP. 77-85; BIBL. 20 REF.Article

Frontiers in high-pressure physics researchCHIDAMBARAM, R; SHARMA, S. M.Current science (Bangalore). 1991, Vol 60, Num 7, pp 397-408, issn 0011-3891, 12 p.Article

Deposition of diamond onto an aluminum substrate by DC plasma CVDNAKAO, S; NODA, M; KUSAKABE, H et al.Japanese journal of applied physics. 1990, Vol 29, Num 8, pp 1511-1514, issn 0021-4922, 1Article

Inviscid melt spinning (IMS); as spun amorphous amumina fibersWALLENBERGER, F. T; WESTON, N. E; DUNN, S. A et al.Materials letters (General ed.). 1990, Vol 9, Num 4, pp 121-127, issn 0167-577XArticle

Analysis of amorphous (Fe0.7Ni0.3)3B alloy using resistivity measurements = Analyse de l'alliage amorphe (Fe0,7Ni0,3)3B en utilisant des mesures de résistivitéSHAMIM, A; SYED, A. A; BHATTI, A. S et al.International journal of electronics. 1988, Vol 64, Num 5, pp 767-770, issn 0020-7217Article

A transmission electron microscopy study of the microtwins formed during the crystallization of an amorphous NiZr2 alloy = Une étude par microscopie électronique en transmission des micromacles formés au cours de la cristallisation d'un alliage NiZr2 amorpheFENG, Y. C; KUO, K. H; HEI, Z. K et al.Philosophical magazine. A. Physics of condensed matter. Defects and mechanical properties. 1987, Vol 56, Num 6, pp 757-766, issn 0141-8610Article

The effect of strain energy on the morphology of a cubic crystalline precipitate in an amorphous matrix = Effet de l'énergie de déformation sur la morphologie d'un précipité cristallin cubique dans une matrice amorpheSHNECK, R; ROKHLIN, S. I; DARIEL, M. P et al.Journal of non-crystalline solids. 1986, Vol 87, Num 3, pp 263-280, issn 0022-3093Article

Local structure of an amorphous Cu24 Zr76 by EXAFS: from the as-prepared alloy the first steps of crystallization existence of frustation? = Structure locale d'un amorphe Cu24Zr76 par EXAFS: De l'alliage préparé aux premiers stades de la cristallisation existence de frustration?SADOC, A; LASJAUNIAS, J. C.Journal de physique. Colloques. 1985, Vol 46, Num 8, pp C8.505-C8.509, issn 0449-1947Article

Relaxation processes associated with crystallization and glass transition in amorphous 5PbO•3GeO2MAEDA, M.Japanese journal of applied physics. 1985, Vol 24, Num 4, pp 397-400, issn 0021-4922Article

Structural relaxations in Ni35Ti65 and Te78Si22 glasses studied by DSC measurements = Relaxations structurales dans les verres Ni35Ti65 et Te78Si22 étudiés par mesures DSCRUPPERSBERG, H; GÖRLITZ, C; HECK, B et al.Journal of physics. F. Metal physics. 1984, Vol 14, Num 2, pp 309-321, issn 0305-4608Article

Dielectric relaxation at the glass transition as a free volume process. Pt. 2:A continuous distribution of relaxation times = Relaxation diélectrique à la transition du verre, utilisée comme un processus du volume libre. Partie 2 = Dielektrische Relaxation am Glasuebergang als ein Prozess des freien Volumens. T. 2ALGRIA, A; BARANDIARAN, J.M; COLMENERO, J et al.Physica status solidi. B. Basic research. 1984, Vol 125, Num 1, pp 409-419, issn 0370-1972Article

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