Knies, D.; Wittmüß, P.; Appel, S.; Sawodny, O.; Ederer, M.; Feuer, R.
Modeling and Simulation of Optimal Resource Management during the Diurnal Cycle in Emiliania huxleyi by Genome-Scale Reconstruction and an Extended Flux Balance Analysis Approach. Metabolites 2015, 5, 659-676.
https://doi.org/10.3390/metabo5040659
AMA Style
Knies D, Wittmüß P, Appel S, Sawodny O, Ederer M, Feuer R.
Modeling and Simulation of Optimal Resource Management during the Diurnal Cycle in Emiliania huxleyi by Genome-Scale Reconstruction and an Extended Flux Balance Analysis Approach. Metabolites. 2015; 5(4):659-676.
https://doi.org/10.3390/metabo5040659
Chicago/Turabian Style
Knies, David, Philipp Wittmüß, Sebastian Appel, Oliver Sawodny, Michael Ederer, and Ronny Feuer.
2015. "Modeling and Simulation of Optimal Resource Management during the Diurnal Cycle in Emiliania huxleyi by Genome-Scale Reconstruction and an Extended Flux Balance Analysis Approach" Metabolites 5, no. 4: 659-676.
https://doi.org/10.3390/metabo5040659
APA Style
Knies, D., Wittmüß, P., Appel, S., Sawodny, O., Ederer, M., & Feuer, R.
(2015). Modeling and Simulation of Optimal Resource Management during the Diurnal Cycle in Emiliania huxleyi by Genome-Scale Reconstruction and an Extended Flux Balance Analysis Approach. Metabolites, 5(4), 659-676.
https://doi.org/10.3390/metabo5040659