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Mose bar Kepha und seine Paulinenauslegung : nebst Edition und Übersetzung des Kommentars zum Römerbrief /Reller, Jobst. January 1994 (has links)
Diss.--Göttingen--Universität, 1992. / Contient en annexe le texte syriaque seul de la Vita de Mose bar Kepha, et le texte syriaque avec trad. allemande d'un fragment du commentaire de Mose bar Kepha sur la "Métaphysique" d'Aristote. Bibliogr. p. 478-491 . Index.
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L'Élevage intensif des larves et des juvéniles du Bar : Dicentrarchus labrax L. : données biologiques, zootechniques et pathologiques.Fernandes, Maria Hellena Calleça Barahona, January 1900 (has links)
Th.--Sci. nat.--Aix-Marseille 2, 1978. / Extr. en partie de Aquaculture, 10, 1977, 53-63.
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Nábytek pro denní baryKameníková, Věra January 2009 (has links)
No description available.
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Role fyziologicky aktivních metabolitů 6-benzylaminopurinu v morfogenezi a vývoji rostlinDundálková, Lucie January 2010 (has links)
No description available.
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Zápultí restauračních zařízeníDušek, Daniel January 2006 (has links)
No description available.
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Interiér Tapas baru v BrněHejtmánková, Tereza January 2013 (has links)
No description available.
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Interiér Tapas baru v BrněHejtmánková, Tereza January 2013 (has links)
No description available.
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Interiér Tapas baru v BrněHejtmánková, Tereza January 2013 (has links)
No description available.
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Dive BarsYous, Nora January 2021 (has links)
The aim of this project is to researchthe architecture of the dive bar inStockholm. What architecture constitutesa dive bar? How are they recognisable?How do they differ, What is their soul, dothey share a common soul. Drawing onwritings of christian Norber schulz I aimto research the soul of their architecture.
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Structure-property stress state dependent relationships under varying strain ratesTucker, Matthew Taylor 02 May 2009 (has links)
In this work, understanding the microstructural effects on stress state and strain rate dependent plasticity, damage, and failure of aluminum and magnesium alloys were examined. Several experimental techniques were employed to implement the test data into a physics-based internal state variable plasticity-damage model. Effects arising from various strain rates, stress states, and material orientations were quantified and discussed within the framework of linking microstructural features to mechanical properties. The method developed for determining structure-property relations was validated by accurately capturing the effects for a variety of materials and loading conditions. The end result is a methodology capable of predicting the onset of damage and failure for a material loaded under complex dynamic conditions.
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