Paramètres
- 607pages
- 22 heures de lecture
En savoir plus sur le livre
This volume explores the transition of ecology from a "soft" science to a "hard" science, emphasizing the adaptability of scientific methods to new ecological truths. It marks a shift in ecological science from explanatory to predictive criteria, aiming for optimal design and control of ecosystems. The book is divided into three parts. Part I offers an overview of methods and rationales for ecological systems modeling, introducing the use of analog and digital computers for simulation and the principles of ecological model-building. Part II presents three approaches to population modeling, including a mathematical analysis of microbial dynamics in various cultures and a bioenergetics study of the terrestrial isopod Armadillidium, employing concepts from control theory and classical dynamic analysis. Part III compiles papers on various aspects and philosophies of ecological simulation, addressing common challenges in ecosystem simulation and exploring the potential integration of newer systems ecology methods with traditional synecology data and observations. Overall, the book serves as an optimistic exploration of the evolving landscape of ecological research and its methodologies.
Achat du livre
Systems Analysis and Simulation in Ecology, Bernard C. Patten
- Langue
- Année de publication
- 1971
- product-detail.submit-box.info.binding
- (rigide),
- État du livre
- Abîmé
- Prix
- 17,19 €
Modes de paiement
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- Langue
- Anglais
- Auteurs
- Bernard C. Patten
- Éditeur
- Academic Press
- Publié
- 1971
- Format
- rigide
- Pages
- 607
- ISBN10
- 0125472013
- ISBN13
- 9780125472012
- Séries
- Mots clés
- Nonfiction, Science et Mathématiques, Science, Thématique écologique, Écologie, Traitement des données
- Description
- This volume explores the transition of ecology from a "soft" science to a "hard" science, emphasizing the adaptability of scientific methods to new ecological truths. It marks a shift in ecological science from explanatory to predictive criteria, aiming for optimal design and control of ecosystems. The book is divided into three parts. Part I offers an overview of methods and rationales for ecological systems modeling, introducing the use of analog and digital computers for simulation and the principles of ecological model-building. Part II presents three approaches to population modeling, including a mathematical analysis of microbial dynamics in various cultures and a bioenergetics study of the terrestrial isopod Armadillidium, employing concepts from control theory and classical dynamic analysis. Part III compiles papers on various aspects and philosophies of ecological simulation, addressing common challenges in ecosystem simulation and exploring the potential integration of newer systems ecology methods with traditional synecology data and observations. Overall, the book serves as an optimistic exploration of the evolving landscape of ecological research and its methodologies.


