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Biological Kinetics (Paperback): Lee A. Segel Biological Kinetics (Paperback)
Lee A. Segel
R1,394 Discovery Miles 13 940 Ships in 10 - 15 working days

As interest in theoretical biology grows, so does the need for an accessible link between these theories and experiments. The central purpose of this book is to illustrate the premise that examination of the kinetics of biological processes can give valuable information concerning the underlying mechanisms that are responsible for these processes. Topics covered range from co-operativity in protein binding, through receptor-infector coupling, to theories of biochemical oscillations in yeast and slime mould. In addition, an introduction to the explosively growing theoretical topic of chaos details attempts to apply this theory in physiology. The material of this book originally appeared as part of the volume Mathematical Models in Molecular and Cellular Biology (edited by L. A. Segel). However each article has been revised and updated.

Biological Delay Systems - Linear Stability Theory (Paperback): N. Macdonald Biological Delay Systems - Linear Stability Theory (Paperback)
N. Macdonald; Edited by C. Cannings, Frank C. Hoppensteadt, Lee A. Segel
R3,641 Discovery Miles 36 410 Ships in 10 - 15 working days

In studying the dynamics of populations, whether of animals, plants or cells, it is crucial to allow for intrinsic delays, due to such things as gestation, maturation or transport. This book is concerned with one of the fundamental questions in the analysis of the effect of delays, namely determining whether they effect the stability of steady states. The analysis is presented for one or two such delays treated both as discrete, where an event which occurred at a precise time in the past has an effect now, and distributed, where the delay is averaged over the population's history. Both of these types occur in biological contexts. The method used to tackle these questions is linear stability analysis which leads to an understanding of the local stability. By avoiding global questions, the author has kept the mathematical prerequisites to a minimum, essentially advanced calculus and ordinary differential equations.

Biological Kinetics (Hardcover, New): Lee A. Segel Biological Kinetics (Hardcover, New)
Lee A. Segel
R2,492 Discovery Miles 24 920 Ships in 10 - 15 working days

As interest in theoretical biology grows, so does the need for an accessible link between these theories and experiments. The central purpose of this book is to illustrate the premise that examination of the kinetics of biological processes can give valuable information concerning the underlying mechanisms that are responsible for these processes. Topics covered range from co-operativity in protein binding, through receptor-infector coupling, to theories of biochemical oscillations in yeast and slime mould. In addition, an introduction to the explosively growing theoretical topic of chaos details attempts to apply this theory in physiology. The material of this book originally appeared as part of the volume Mathematical Models in Molecular and Cellular Biology (edited by L. A. Segel). However each article has been revised and updated.

Biological Delay Systems - Linear Stability Theory (Hardcover, New): N. Macdonald Biological Delay Systems - Linear Stability Theory (Hardcover, New)
N. Macdonald; Edited by C. Cannings, Frank C. Hoppensteadt, Lee A. Segel
R3,570 Discovery Miles 35 700 Ships in 10 - 15 working days

In studying the dynamics of populations, whether of animals, plants or cells, it is crucial to allow for intrinsic delays, due to such things as gestation, maturation or transport. This book is concerned with one of the fundamental questions in the analysis of the effect of delays, namely determining whether they effect the stability of steady states. The analysis is presented for one or two such delays treated both as discrete, where an event which occurred at a precise time in the past has an effect now, and distributed, where the delay is averaged over the population's history. Both of these types occur in biological contexts. The method used to tackle these questions is linear stability analysis which leads to an understanding of the local stability. By avoiding global questions, the author has kept the mathematical prerequisites to a minimum, essentially advanced calculus and ordinary differential equations.

Modeling Dynamic Phenomena in Molecular and Cellular Biology (Paperback): Lee A. Segel Modeling Dynamic Phenomena in Molecular and Cellular Biology (Paperback)
Lee A. Segel
R1,729 Discovery Miles 17 290 Ships in 10 - 15 working days

A classroom-tested introduction to model analysis of dynamic phenomena that takes a general approach and applies it several times to problems of gradually increasing biological and mathematical complexity.

Mathematical Models in Molecular Cellular Biology (Paperback, New Ed): Lee A. Segel Mathematical Models in Molecular Cellular Biology (Paperback, New Ed)
Lee A. Segel
R1,879 Discovery Miles 18 790 Ships in 10 - 15 working days

Interest in theoretical biology is rapidly growing and this 1981 book attempts to make the theory more accessible to experimentalists. Its primary purpose is to demonstrate to experimental molecular and cellular biologists the possible usefulness of mathematical models. Biologists with a basic command of calculus should be able to learn from the book what assumptions are implied by various types of equations, to understand in broad outline a number of major theoretical concepts, and to be aware of some of the difficulties connected with analytical and numerical solutions of mathematical problems. Thus they should be able to appreciate the significance of theoretical papers in their fields and to communicate usefully with theoreticians in the course of their work.

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