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Titlebook: Bioreaction Engineering Principles; Jens Nielsen,John Villadsen Book 1994 Springer Science+Business Media New York 1994 bioengineering.bio

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期刊全称Bioreaction Engineering Principles
影响因子2023Jens Nielsen,John Villadsen
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图书封面Titlebook: Bioreaction Engineering Principles;  Jens Nielsen,John Villadsen Book 1994 Springer Science+Business Media New York 1994 bioengineering.bio
影响因子Integrating recent research on the physiology and modelling ofbioreactions and bioreactors, the authors present a comprehensive,unified introduction to the principles and practices of the field.The work features nearly 100 detailed design examples and problems,many of which are suitable for hands-on demonstrations on a personalcomputer or for expanded research. The text will serve as a highlyinstructive guide forstudents in bioengineering and biotechnology,as well as biochemical, chemical, and environmental engineering.
Pindex Book 1994
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Cellular Growth Reactions,bbs free energy, which is used to fuel all the other reactions, biosynthesis of building blocks from substrates, polymerization of the building blocks into macromolecules, and assembly of macromolecules into organdies. In order to ensure orderly and energy-efficient growth, most of these reactions h
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Population Balances Based on Cell Number, of intracellularly structured models and population models. However, the population balances based on mass fractions do not permit the incorporation into the model of specific events in the cell cycle, and the single-cell models of Section 4.2.4 can therefore not be used in connection with these po
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Mass Transfer,e rate processes with time constants not much smaller than those of the cellular reactions. Therefore . must be included in an analysis of bioreactions alongside of stoichiometry and cellular kinetics.
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Humility Within Critical Pedagogy,esent stage of our development it is convenient to condense the general stoichiometry in Eqs. (2.19)–(2.21) to . where . is the total stoichiometric matrix. Equation (3.1) is formally the same as Eq. (2.20), expressing the stoichiometry of . reactions, but the extracellular substrates and products a
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