0
Your cart

Your cart is empty

Browse All Departments
  • All Departments
Price
  • R1,000 - R2,500 (1)
  • R5,000 - R10,000 (1)
  • -
Status
Brand

Showing 1 - 2 of 2 matches in All Departments

Dynamics of the Chemostat - A Bifurcation Theory Approach (Hardcover, New): Abdelhamid Ajbar, Khalid Alhumaizi Dynamics of the Chemostat - A Bifurcation Theory Approach (Hardcover, New)
Abdelhamid Ajbar, Khalid Alhumaizi
R6,425 Discovery Miles 64 250 Ships in 12 - 19 working days

A ubiquitous tool in mathematical biology and chemical engineering, the chemostat often produces instabilities that pose safety hazards and adversely affect the optimization of bioreactive systems. Singularity theory and bifurcation diagrams together offer a useful framework for addressing these issues. Based on the authors' extensive work in this field, Dynamics of the Chemostat: A Bifurcation Theory Approach explores the use of bifurcation theory to analyze the static and dynamic behavior of the chemostat.

Introduction
The authors first survey the major work that has been carried out on the stability of continuous bioreactors. They next present the modeling approaches used for bioreactive systems, the different kinetic expressions for growth rates, and tools, such as multiplicity, bifurcation, and singularity theory, for analyzing nonlinear systems.

Application
The text moves on to the static and dynamic behavior of the basic unstructured model of the chemostat for constant and variable yield coefficients as well as in the presence of wall attachment. It then covers the dynamics of interacting species, including pure and simple microbial competition, biodegradation of mixed substrates, dynamics of plasmid-bearing and plasmid-free recombinant cultures, and dynamics of predator-prey interactions. The authors also examine dynamics of the chemostat with product formation for various growth models, provide examples of bifurcation theory for studying the operability and dynamics of continuous bioreactor models, and apply elementary concepts of bifurcation theory to analyze the dynamics of a periodically forced bioreactor.

Using singularity theory and bifurcation techniques, this book presents a cohesive mathematical framework for analyzing and modeling the macro- and microscopic interactions occurring in chemostats. The text includes models that describe the intracellular and operating elements of the bioreactive system. It also explains the mathematical theory behind the models.

Dynamics of the Chemostat - A Bifurcation Theory Approach (Paperback): Abdelhamid Ajbar, Khalid Alhumaizi Dynamics of the Chemostat - A Bifurcation Theory Approach (Paperback)
Abdelhamid Ajbar, Khalid Alhumaizi
R2,413 Discovery Miles 24 130 Ships in 12 - 19 working days

A ubiquitous tool in mathematical biology and chemical engineering, the chemostat often produces instabilities that pose safety hazards and adversely affect the optimization of bioreactive systems. Singularity theory and bifurcation diagrams together offer a useful framework for addressing these issues. Based on the authors' extensive work in this field, Dynamics of the Chemostat: A Bifurcation Theory Approach explores the use of bifurcation theory to analyze the static and dynamic behavior of the chemostat. IntroductionThe authors first survey the major work that has been carried out on the stability of continuous bioreactors. They next present the modeling approaches used for bioreactive systems, the different kinetic expressions for growth rates, and tools, such as multiplicity, bifurcation, and singularity theory, for analyzing nonlinear systems. ApplicationThe text moves on to the static and dynamic behavior of the basic unstructured model of the chemostat for constant and variable yield coefficients as well as in the presence of wall attachment. It then covers the dynamics of interacting species, including pure and simple microbial competition, biodegradation of mixed substrates, dynamics of plasmid-bearing and plasmid-free recombinant cultures, and dynamics of predator-prey interactions. The authors also examine dynamics of the chemostat with product formation for various growth models, provide examples of bifurcation theory for studying the operability and dynamics of continuous bioreactor models, and apply elementary concepts of bifurcation theory to analyze the dynamics of a periodically forced bioreactor. Using singularity theory and bifurcation techniques, this book presents a cohesive mathematical framework for analyzing and modeling the macro- and microscopic interactions occurring in chemostats. The text includes models that describe the intracellular and operating elements of the bioreactive system. It also explains the mathematical theory behind the models.

Free Delivery
Pinterest Twitter Facebook Google+
You may like...
Photoactive Semiconductor Nanocrystal…
Alberto Credi Hardcover R8,098 Discovery Miles 80 980
The Origin Of Others
Toni Morrison Hardcover  (3)
R569 R517 Discovery Miles 5 170
Micro and Nanophotonics for…
Zoran Jaksic Hardcover R4,243 R3,661 Discovery Miles 36 610
A Promised Land
Barack Obama Hardcover  (6)
R930 R778 Discovery Miles 7 780
Black And White Bioscope - Making Movies…
Neil Parsons Hardcover R339 Discovery Miles 3 390
World War II Rhode Island
Christian McBurney, Brian L Wallin, … Paperback R591 R544 Discovery Miles 5 440
100 Mandela Moments
Kate Sidley Paperback R250 R212 Discovery Miles 2 120
Fundamental Properties of Semiconductor…
Naoki Fukata, Riccardo Rurali Hardcover R4,348 Discovery Miles 43 480
Ghosts of the Blackstone Valley
Thomas D'Agostino, Arlene Nicholson Paperback R572 R525 Discovery Miles 5 250
Solar Cells Based on Colloidal…
Holger Borchert Hardcover R3,038 Discovery Miles 30 380

 

Partners