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Crystal Growth from Melts – Applications to Growth of Groups 1 and 2 Crystals

Published/Copyright: July 28, 2010

Published Online: 2010-7-28
Published in Print: 1993-2-1

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  2. A random approach to the phase problem, a weighted XMY-function
  3. Struktur des Ergolinderivats 1,1-Diethyl-3-[(2R,3R,5R,8S,10S)-2,3-dihydro-2,6-dimethyl-8-ergolinyl]-harnstoff bei drei verschiedenen Temperaturen: 295 K, 50 K und 15 K
  4. On determining the double Patterson function for non-centrosymmetric structures
  5. Ferroelastic transformation and crystal structure of Ba-diluted lead phosphate, (Pb1 − xBax)3(PO4)2
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  10. Crystal structure of 1,2-benzisothiazol-3(2H)-one-1,1-dioxide, (saccharin) silver salt, Ag(C7H4NO3S)
  11. Crystal structure of bis(nitrato)bis(2,2′,2″-tripyridylamine)copper(II), C30H24CuN10O6
  12. Crystal structure of 2,4-bis(methylthio)-1,3-dithiaphosphetane-2,4-disulfide, (CH3S)2(P2S2)S2
  13. Crystal structure of bis(1,3-di-tert-butyl-cyclopentadienyl)zirconium dichloride, C26H42Cl2Zr
  14. Crystal structure of 2-salicyliden-amino-4,5-diphenyl-3-cyanofuran, ((C6H5)CC(C6H5)OCCCNNCH(C6H4)OH)2
  15. Crystal structure of tetracarbonylchromium-μ-(N-bis(2-diphenylphosphino)ethyl-N′-dimethyldiaminopropane)-dichloro-N,N′-zinc dichloromethane solvate, (CO)4Cr(P(C6H5)2)2(CH)(C6N2H15)ZnCl2
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  31. Crystal Growth from Melts – Applications to Growth of Groups 1 and 2 Crystals
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