Product details
- Publisher : Academic Press; 1st edition (February 12, 2001)
- Language : English
- Hardcover : 594 pages
- ISBN-10 : 012386660X
- ISBN-13 : 978-0123866608
- Item Weight : 2.05 pounds
- Dimensions : 6 x 1.31 x 9 inches
$85.40
1st Edition
by Edward A. Johnson (Editor), Kiyoko Miyanishi (Series Editor)
Even before the myth of Prometheus, fire played a crucial ecological role around the world. Numerous plant communities depend on fire to generate species diversity in both time and space. Without fire such ecosystems would become sterile monocultures. Recent efforts to prohibit fire in fire dependent communities have contributed to more intense and more damaging fires. For these reasons, foresters, ecologists, land managers, geographers, and environmental scientists are interested in the behavior and ecological effects of fires. This book will be the first to focus on the chemistry and physics of fire as it relates to the ways in which fire behaves and the impacts it has on ecosystem function. Leading international contributors have been recruited by the editors to prepare a didactic text/reference that will appeal to both advanced students and practicing professionals.
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(2007-02-28) Hardcover – January 1, 1885
(Project Vesta, Interim edn) Kindle Edition
by JS Gould (Author, Editor), WL McCaw (Author, Editor), NP Cheney (Author, Editor), & 2 more Format: Kindle EditionHardcover – May 1, 2010
by G. Perona (Author) This book contains peer-reviewed papers presented at the Second International Conference on Modelling, Monitoring and Management of Forest Fires. Organized by the Wessex Institute of Technology, UK, in collaboration with the Politecnico di Torino, Italy, the conference was.held in Kos, Greece, in June, 2010. The papers cover important topics in the field of prevention and fighting of forest fires.Forest fire scenarios are impacted by climatic trends and changes in climatic extremes, as well as by human pressure on the natural environment. Forecasting the effects of both climatic and anthropic factors and separating their effects on forest fire frequency may be particularly difficult, but it is essential to improve our knowledge of the probability of forest fire occurrence and to better organize prevention and fighting activities. Considering the many fire-prone environments around the world and the meteorological parameters known to affect fire risk, the ability to estimate the probability of fire will be increasingly important in coming years. The papers from the conference will contribute to greater understanding of all these factors, so that we can prevent, monitor, and better manage forest fires2011th Edition
by Sara McAllister (Author), Jyh-Yuan Chen (Author), A. Carlos Fernandez-Pello (Author) Fundamentals of Combustion Processes is designed as a textbook for an upper-division undergraduate and graduate level combustion course in mechanical engineering. The authors focus on the fundamental theory of combustion and provide a simplified discussion of basic combustion parameters and processes such as thermodynamics, chemical kinetics, ignition, diffusion and pre-mixed flames. The text includes exploration of applications, example exercises, suggested homework problems and videos of laboratory demonstrationsby Vladimir Ya. Alexandrov (Author), V.A. Bernstam (Translator)
(Ecological Studies, 21) Softcover reprint of the original 1st ed. 1977 EditionAfter the great achievements in the field of molecular foundations of genetics and protein synthesis, molecular biology undertook the successful deciphering of a number of other important biological problems. By this time ecology in its various branches was far enough advanced to tackle the problems arising at the level of molecular biology. The monograph of Professor Alexandrov, which takes as an example the adaptation of organisms to habitat temperatures, presents a vivid picture of this major ecological problem as viewed at the cellular and molecular levels. As main theme of the book the author advances a hypothesis on a correlation between the level of conformational flexibility of protein molecules and the temperature ecology of a species, as a result of which the protein molecules are maintained in a semilabile state. This principle may also be applied to other factors of the environment which affect the level of flexibility of protein macro molecules. The principle of semistability is shown to be applicable also to the nucleic and fatty acids.
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