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Titlebook: Hyperbolic Complex Spaces; Shoshichi Kobayashi Book 1998 Springer-Verlag Berlin Heidelberg 1998 Hyperbolische komplexe Räume.Schwarz lemma

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Extension and Finiteness Theorems,zation to a system of entire functions. One of its geometric consequences is that given . + . hyperplanes ..,..., ... in ... in general position, every . has its image in a linear subspace of dimension ≤ [.], see (3.10.7). For . = . + 1, this means that . must be constant, (see (3.10.8)). This has b
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Value Distributions,annian of (. + 1)-dimensional subspaces in ... Then dim . (., .) = (. − .)(. + 1). To a (. + 1)-dimensional subspace spanned by .., …, .. ∈ ..., we assign a decomposable (. + 1)-vector . = .. ∧ … ∧ .. ∈ ∧..... which is determined, up to a constant factor, by the subspace. Conversely, each decomposab
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Shoshichi Kobayashiia. Only in the last century the domain become organized and defined as biomaterials and medical devices. The latest advances permit doctors and scientist involved in the design and production of biomaterials to be one step closer to the deity concept. This chapter is especially devoted to general a
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Shoshichi Kobayashioenvironment, consisting of soluble bioactive agents and the extracellular matrix.While the dynamic extracellular matrix is difficult to mimic in its entirety, recent research has successfully mimicked individual matrix-centric cues using synthetic polymeric systems to influence differentiation of s
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Shoshichi Kobayashi the cell including soluble and insoluble signals, physical forces and cell–cell contacts. Approximating the stem cell niche through the utilization of biomaterials may give rise to a greater understanding of the biology of the stem cell niche as well as potential in vitro culture systems and transl
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