CHF 135.00

Oscillation and Stability of Delay Models in Biology

Inglese · Tascabile

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

Environmental variation plays an important role in many biological and ecological dynamical systems. This monograph focuses on the study of oscillation and the stability of delay models occurring in biology. The book presents recent research results on the qualitative behavior of mathematical models under different physical and environmental conditions, covering dynamics including the distribution and consumption of food. Researchers in the fields of mathematical modeling, mathematical biology, and population dynamics will be particularly interested in this material.

Info autore










Ravi P. Agarwal
Department of Mathematics
Texas A&M University
Kingsville, Texas
USA

Erdal Karap¿nar 
At¿l¿m University
Department of Mathematics
K¿z¿lçäar Köyü
06836 ¿ncek ANKARA
Turkey 

Donal O'Regan 
Department of Mathematics
University of Galway
Galway
Ireland

Antonio F. Roldán-López-de-Hierro
Department of Mathematics
University of Granada
Granada


Riassunto

Environmental variation plays an important role in many biological and ecological dynamical systems. This monograph focuses on the study of oscillation and the stability of delay models occurring in biology. The book presents recent research results on the qualitative behavior of mathematical models under different physical and environmental conditions, covering dynamics including the distribution and consumption of food. Researchers in the fields of mathematical modeling, mathematical biology, and population dynamics will be particularly interested in this material.

Testo aggiuntivo

“The text under review collects under a single cover a number of important theoretical results on delay differential equations, both ordinary and partial; these results can be applied for the analysis of relevant mathematical models of population dynamics. … This text is a valuable resource for researchers and graduate students in mathematics who study stability properties and oscillation of solutions for various classes of delay differential equations; it contains many useful mathematical results and a rich list of references.” (Svitlana P. Rogovchenko, Mathematical Reviews, February, 2016)
“This book concerns the behaviour of a particular class of delay differential equations … . The book should be of interest to those interested in proving results about the behaviour of delay differential equations.” (Carlo Laing, zbMATH 1312.37001,2015)

Relazione

"The text under review collects under a single cover a number of important theoretical results on delay differential equations, both ordinary and partial; these results can be applied for the analysis of relevant mathematical models of population dynamics. ... This text is a valuable resource for researchers and graduate students in mathematics who study stability properties and oscillation of solutions for various classes of delay differential equations; it contains many useful mathematical results and a rich list of references." (Svitlana P. Rogovchenko, Mathematical Reviews, February, 2016)
"This book concerns the behaviour of a particular class of delay differential equations ... . The book should be of interest to those interested in proving results about the behaviour of delay differential equations." (Carlo Laing, zbMATH 1312.37001,2015)

Dettagli sul prodotto

Autori Ravi P. Agarwal, Samir H. Saker, Donal O'Regan, Ravi Agarwal, Dona O'Regan, Samir H Saker, Ravi P Agarwal
Editore Springer, Berlin
 
Contenuto Libro
Forma del prodotto Tascabile
Data pubblicazione 01.01.2016
Categoria Scienze naturali, medicina, informatica, tecnica > Biologia > Genetica, tecnica genetica
 
EAN 9783319381398
ISBN 978-3-31-938139-8
Numero di pagine 340
Illustrazioni X, 340 p.
Dimensioni (della confezione) 15.5 x 1.9 x 23.5 cm
Peso (della confezione) 534 g
 
Categorie B, Dynamics, Mathematics and Statistics, Genetics and Population Dynamics, Dynamical Systems and Ergodic Theory, Ergodic theory, Nonlinear science, Dynamical systems, Biomathematics, Population Genetics
 

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