Fractals and Multifractals in Ecology and Aquatic Science

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A01=Laurent Seuront
advanced fractal modeling in aquatic science
analysis
Author_Laurent Seuront
biomass
Burrow Morphology
Category=PB
Category=PSAF
chaos theory applications
CRW
Cumulative Distribution Functions
Data Set
dimension
Eastern English Channel
ecological data interpretation
Ecological Scaling
embedding
Embedding Dimension
environmental pattern analysis
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eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
Fractal Analysis
Fractal Dimension
Fractal Dimensions Estimated
Fractals and Multifractals in Ecology and Aquatic Science
Fractional Gaussian Noise
Generalized Correlation Functions
Hurst Exponent
Laurent Seuront
Log Log Plot
log-log
nonlinear ecological modeling
Ood Tide
Phase Space Portraits
phytoplankton
Phytoplankton Biomass
plot
Power Law Behavior
quantitative ecology methods
sciences
Self-organized Criticality
Spatial patterns
spatial temporal analysis
Spectral Exponent
Swimming Path
Temporal patterns
Turbulent Kinetic Energy Dissipation Rate
uorescence
Vincent Van Gogh
vivo
Vivo Uorescence
Zipf's Law
Zipf’s Law

Product details

  • ISBN 9780849327827
  • Weight: 816g
  • Dimensions: 178 x 254mm
  • Publication Date: 12 Oct 2009
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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Ecologists sometimes have a less-than-rigorous background in quantitative methods, yet research within this broad field is becoming increasingly mathematical. Written in a step-by-step fashion, Fractals and Multifractals in Ecology and Aquatic Science provides scientists with a basic understanding of fractals and multifractals and the techniques for utilizing them when analyzing ecological phenomenon.

With illustrations, tables, and graphs on virtually every page – several in color – this book is a comprehensive source of state-of-the-art ecological scaling and multiscaling methods at temporal and spatial scales, respectfully ranging from seconds to months and from millimeters to thousands of kilometers. It illustrates most of the data analysis techniques with real case studies often based on original findings. It also incorporates descriptions of current and new numerical techniques to analyze and deepen understanding of ecological situations and their solutions.

Includes a Wealth of Applications and Examples

This book also includes nonlinear analysis techniques and the application of concepts from chaos theory to problems of spatial and temporal patterns in ecological systems. Unlike other books on the subject, Fractals and Multifractals in Ecology and Aquatic Science is readily accessible to researchers in a variety of fields, such as microbiology, biology, ecology, hydrology, geology, oceanography, social sciences, and finance, regardless of their mathematical backgrounds. This volume demystifies the mathematical methods, many of which are often regarded as too complex, and allows the reader to access new and promising concepts, procedures, and related results.

Laurent Seuront is a Professor in Biological Oceanography at the Flinders University (Adelaide, Australia) and a Senior Research Scientist at the South Australian Research and Development Institute (West Beach, Australia). Prior to his present position, he was a research fellow of the Japanese Society for the Promotion of Science at the Tokyo University of Fisheries (1999-2000) and a research scientist at the Centre National de la Recherche Scientifique (CNRS) in France (2001-2008). Among multiple awards, he recently received the CNRS Bronze Medal in France (2007) in recognition of his early career achievements, and a prestigious Australian Professorial Fellowship from the Australian Research Council.

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