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Titlebook: Science and Technology of Crystal Growth; Lectures given at th J. P. Eerden,O. S. L. Bruinsma Book 1995 Springer Science+Business Media Dor

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Vapour Growthaqueous and other solutions) the species have the highest mobility in the gas, but their volume concentrations (. = . = number of moles, . = volume) are low. Under certain circumstances, crystals can be grown at remarkable lower temperatures from a gas phase than from a melt, thus allowing crystalli
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Morphology of Crystals: Past and Futuree science crystallography first purely mathematical recipes to describe the morphology are summarized. Next the basic principles of the Hartman-Perdok theory are summarized, using a new formulation based on the theory of roughening transition. Computer methods to determine the dominant faces occurri
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Modulated and Quasicrystals]. From a modern point of view this law implies that each crystal face is characterised by a set of three integral indices (.), the so-called Miller indices, which determine a reciprocal lattice vector . perpendicular to the face . where . are the basis vectors of the reciprocal lattice. The set of
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Morphological Instability: Dendrites, Seaweed, and Fractals considered good examples of this regularity. On the other hand, it is clear that there is a profound difference between the relatively simple shape of, say, a salt (NaCl) crystal, consisting of highly symmetric polyhedra (cubes) and that of a snowflake. While the latter is also symmetric, it has a
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Atomic Models for Crystal Growthesign and produce new materials, its relevance is growing. Indeed, since crystal growth is a highly collective process, atomic scale properties are decisive for the macroscopic behavior of crystallizers. Therefore atomic modeling is bound to become indispensable in the further development of materials and processes.
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