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Joseph J Heijnen

Showing results (1-10 of 101) with videos related to

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Biotechnology and Bioengineering|July 9, 2005
Approximative kinetic formats used in metabolic network modelingJoseph J Heijnen
Metabolic Engineering|May 16, 2002
The mathematics of metabolic control analysis revisitedDiana Visser, Joseph J Heijnen
Metabolic Engineering|September 2, 2003
Dynamic simulation and metabolic re-design of a branched pathway using linlog kineticsDiana Visser, Joseph J Heijnen
Biotechnology Journal|July 2, 2013
Parameter identification of in vivo kinetic models: limitations and challengesJoseph J Heijnen, Peter J T Verheijen
Metabolomics : Official Journal of the Metabolomic Society|September 15, 2015
Development of tools for quantitative intracellular metabolomics of <i>Aspergillus niger</i> chemostat culturesFrancisca Lameiras, Joseph J Heijnen, Walter M van Gulik
Metabolic Engineering|March 29, 2011
Escherichia coli responds with a rapid and large change in growth rate upon a shift from glucose-limited to glucose-excess conditionsHilal Taymaz-Nikerel, Walter M van Gulik, Joseph J Heijnen
Biotechnology and Bioengineering|April 3, 2008
Determination of the cytosolic free NAD/NADH ratio in Saccharomyces cerevisiae under steady-state and highly dynamic conditionsAndré B Canelas, Walter M van Gulik, Joseph J Heijnen
Biotechnology and Bioengineering|December 26, 2001
Sensitivity analysis of a biofilm model describing a one-stage completely autotrophic nitrogen removal (CANON) processXiaodi Hao, Joseph J Heijnen, Mark C M van Loosdrecht
Metabolic Engineering|February 8, 2011
Towards a quantitative prediction of the fluxome from the proteomeSergio Rossell, Christian Solem, Peter R Jensen, et al.
Water Research|November 27, 2002
Model-based evaluation of temperature and inflow variations on a partial nitrification-ANAMMOX biofilm processXiaodi Hao, Joseph J Heijnen, Mark C M Van Loosdrecht
Pageof 11

Showing results (1-10 of 101) with videos related to

Sort By:
Pageof 11
Biotechnology and Bioengineering|July 9, 2005
Approximative kinetic formats used in metabolic network modelingJoseph J Heijnen
Metabolic Engineering|May 16, 2002
The mathematics of metabolic control analysis revisitedDiana Visser, Joseph J Heijnen
Metabolic Engineering|September 2, 2003
Dynamic simulation and metabolic re-design of a branched pathway using linlog kineticsDiana Visser, Joseph J Heijnen
Biotechnology Journal|July 2, 2013
Parameter identification of in vivo kinetic models: limitations and challengesJoseph J Heijnen, Peter J T Verheijen
Metabolomics : Official Journal of the Metabolomic Society|September 15, 2015
Development of tools for quantitative intracellular metabolomics of <i>Aspergillus niger</i> chemostat culturesFrancisca Lameiras, Joseph J Heijnen, Walter M van Gulik
Metabolic Engineering|March 29, 2011
Escherichia coli responds with a rapid and large change in growth rate upon a shift from glucose-limited to glucose-excess conditionsHilal Taymaz-Nikerel, Walter M van Gulik, Joseph J Heijnen
Biotechnology and Bioengineering|April 3, 2008
Determination of the cytosolic free NAD/NADH ratio in Saccharomyces cerevisiae under steady-state and highly dynamic conditionsAndré B Canelas, Walter M van Gulik, Joseph J Heijnen
Biotechnology and Bioengineering|December 26, 2001
Sensitivity analysis of a biofilm model describing a one-stage completely autotrophic nitrogen removal (CANON) processXiaodi Hao, Joseph J Heijnen, Mark C M van Loosdrecht
Metabolic Engineering|February 8, 2011
Towards a quantitative prediction of the fluxome from the proteomeSergio Rossell, Christian Solem, Peter R Jensen, et al.
Water Research|November 27, 2002
Model-based evaluation of temperature and inflow variations on a partial nitrification-ANAMMOX biofilm processXiaodi Hao, Joseph J Heijnen, Mark C M Van Loosdrecht
Pageof 11