Biosystems Engineering II [recurso electrónico] : Linking Cellular Networks and Bioprocesses / edited by Christoph Wittmann, Rainer Krull.

Por: Wittmann, Christoph [editor.]Colaborador(es): Krull, Rainer [editor.] | SpringerLink (Online service)Tipo de material: TextoTextoSeries Advances in Biochemical Engineering / Biotechnology ; 121Editor: Berlin, Heidelberg : Springer Berlin Heidelberg : Imprint: Springer, 2010Descripción: XIV, 166 p. online resourceTipo de contenido: text Tipo de medio: computer Tipo de portador: online resourceISBN: 9783642138669Tema(s): Chemistry | Biotechnology | Biological models | Chemistry | Biotechnology | Systems BiologyFormatos físicos adicionales: Printed edition:: Sin títuloClasificación CDD: 660.6 Clasificación LoC:TP248.13-248.65Recursos en línea: Libro electrónicoTexto
Contenidos:
Morphology of Filamentous Fungi: Linking Cellular Biology to Process Engineering Using Aspergillus niger -- Multi-Scale Spatio-Temporal Modeling: Lifelines of Microorganisms in Bioreactors and Tracking Molecules in Cells -- Impact of Profiling Technologies in the Understanding of Recombinant Protein Production -- Engineering the Escherichia coli Fermentative Metabolism -- Modeling Languages for Biochemical Network Simulation: Reaction vs Equation Based Approaches -- Impact of Thermodynamic Principles in Systems Biology.
En: Springer eBooksResumen: -Morphology of Filamentous Fungi: Linking Cellular Biology to Process Engineering Using Aspergillus niger, By Rainer Krull, Christiana Cordes, Harald Horn, Ingo Kampen, Arno Kwade, Thomas R. Neu, and Bernd Nörtemann; -Multi-Scale Spatio-Temporal Modeling: Lifelines of Microorganisms in Bioreactors and Tracking Molecules in Cells, By Alexei Lapin, Michael Klann, and Matthias Reuss; -Impact of Profiling Technologies in the Understanding of Recombinant Protein Production, By Chandran Vijayendran and Erwin Flaschel -Engineering the Escherichia coli Fermentative Metabolism, By M. Orencio-Trejo, J. Utrilla, M.T. Fernàndez-Sandoval, G. Huerta-Beristain, G. Gosset, and A. Martinez; -Modeling Languages for Biochemical Network Simulation: Reaction vs Equation Based Approaches, By Wolfgang Wiechert, Stephan Noack, and Atya Elsheikh; -Impact of Thermodynamic Principles in Systems Biology, By J.J. Heijnen;
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Colección de Libros Electrónicos TP248.13 -248.65 (Browse shelf(Abre debajo)) 1 No para préstamo 374605-2001
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TP248.13 -248.65 Whole Cell Sensing Systems I TP248.13 -248.65 Biocatalysis Based on Heme Peroxidases TP248.13 -248.65 Whole Cell Sensing System II TP248.13 -248.65 Biosystems Engineering II TP248.13 -248.65 Biosystems Engineering I TP248.13 -248.65 Nano/Micro Biotechnology TP248.13 -248.65 Biotechnology in China II

Morphology of Filamentous Fungi: Linking Cellular Biology to Process Engineering Using Aspergillus niger -- Multi-Scale Spatio-Temporal Modeling: Lifelines of Microorganisms in Bioreactors and Tracking Molecules in Cells -- Impact of Profiling Technologies in the Understanding of Recombinant Protein Production -- Engineering the Escherichia coli Fermentative Metabolism -- Modeling Languages for Biochemical Network Simulation: Reaction vs Equation Based Approaches -- Impact of Thermodynamic Principles in Systems Biology.

-Morphology of Filamentous Fungi: Linking Cellular Biology to Process Engineering Using Aspergillus niger, By Rainer Krull, Christiana Cordes, Harald Horn, Ingo Kampen, Arno Kwade, Thomas R. Neu, and Bernd Nörtemann; -Multi-Scale Spatio-Temporal Modeling: Lifelines of Microorganisms in Bioreactors and Tracking Molecules in Cells, By Alexei Lapin, Michael Klann, and Matthias Reuss; -Impact of Profiling Technologies in the Understanding of Recombinant Protein Production, By Chandran Vijayendran and Erwin Flaschel -Engineering the Escherichia coli Fermentative Metabolism, By M. Orencio-Trejo, J. Utrilla, M.T. Fernàndez-Sandoval, G. Huerta-Beristain, G. Gosset, and A. Martinez; -Modeling Languages for Biochemical Network Simulation: Reaction vs Equation Based Approaches, By Wolfgang Wiechert, Stephan Noack, and Atya Elsheikh; -Impact of Thermodynamic Principles in Systems Biology, By J.J. Heijnen;

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