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Written by a group of international experts in their field, this
book is a review of Lagrangian observation, analysis and
assimilation methods in physical and biological oceanography. This
multidisciplinary text presents new results on nonlinear analysis
of Lagrangian dynamics, the prediction of particle trajectories,
and Lagrangian stochastic models. It includes historical
information, up-to-date developments, and speculation on future
developments in Lagrangian-based observations, analysis, and
modeling of physical and biological systems. Containing
contributions from experimentalists, theoreticians, and modelers in
the fields of physical oceanography, marine biology, mathematics,
and meteorology, this book will be of great interest to researchers
and graduate students looking for both practical applications and
information on the theory of transport and dispersion in physical
systems, biological modeling, and data assimilation.
Written by a group of international experts in their field, this
book is a review of Lagrangian observation, analysis and
assimilation methods in physical and biological oceanography. This
multidisciplinary text presents new results on nonlinear analysis
of Lagrangian dynamics, the prediction of particle trajectories,
and Lagrangian stochastic models. It includes historical
information, up-to-date developments, and speculation on future
developments in Lagrangian-based observations, analysis, and
modeling of physical and biological systems. Containing
contributions from experimentalists, theoreticians, and modellers
in the fields of physical oceanography, marine biology,
mathematics, and meteorology, this book will be of great interest
to researchers and graduate students looking for both practical
applications and information on the theory of transport and
dispersion in physical systems, biological modelling, and data
assimilation.
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