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Mathematical Paradigms of Climate Science (Hardcover, 1st ed. 2016): Fabio Ancona, Piermarco Cannarsa, Christopher Jones,... Mathematical Paradigms of Climate Science (Hardcover, 1st ed. 2016)
Fabio Ancona, Piermarco Cannarsa, Christopher Jones, Alessandro Portaluri
R2,787 R1,886 Discovery Miles 18 860 Save R901 (32%) Ships in 10 - 15 working days

This book, featuring a truly interdisciplinary approach, provides an overview of cutting-edge mathematical theories and techniques that promise to play a central role in climate science. It brings together some of the most interesting overview lectures given by the invited speakers at an important workshop held in Rome in 2013 as a part of MPE2013 ("Mathematics of Planet Earth 2013"). The aim of the workshop was to foster the interaction between climate scientists and mathematicians active in various fields linked to climate sciences, such as dynamical systems, partial differential equations, control theory, stochastic systems, and numerical analysis. Mathematics and statistics already play a central role in this area. Likewise, computer science must have a say in the efforts to simulate the Earth's environment on the unprecedented scale of petabytes. In the context of such complexity, new mathematical tools are needed to organize and simplify the approach. The growing importance of data assimilation techniques for climate modeling is amply illustrated in this volume, which also identifies important future challenges.

Trends in Control Theory and Partial Differential Equations (Hardcover, 1st ed. 2019): Fatiha Alabau-Boussouira, Fabio Ancona,... Trends in Control Theory and Partial Differential Equations (Hardcover, 1st ed. 2019)
Fatiha Alabau-Boussouira, Fabio Ancona, Alessio Porretta, Carlo Sinestrari
R3,994 Discovery Miles 39 940 Ships in 10 - 15 working days

This book presents cutting-edge contributions in the areas of control theory and partial differential equations. Over the decades, control theory has had deep and fruitful interactions with the theory of partial differential equations (PDEs). Well-known examples are the study of the generalized solutions of Hamilton-Jacobi-Bellman equations arising in deterministic and stochastic optimal control and the development of modern analytical tools to study the controllability of infinite dimensional systems governed by PDEs. In the present volume, leading experts provide an up-to-date overview of the connections between these two vast fields of mathematics. Topics addressed include regularity of the value function associated to finite dimensional control systems, controllability and observability for PDEs, and asymptotic analysis of multiagent systems. The book will be of interest for both researchers and graduate students working in these areas.

Transport Equations and Multi-D Hyperbolic Conservation Laws (Paperback, 2008 ed.): Luigi Ambrosio Transport Equations and Multi-D Hyperbolic Conservation Laws (Paperback, 2008 ed.)
Luigi Ambrosio; Edited by Fabio Ancona; Gianluca Crippa; Edited by Stefano Bianchini; Camillo De Lellis; Edited by …
R1,254 Discovery Miles 12 540 Ships in 18 - 22 working days

The theory of nonlinear hyperbolic equations in several space dimensions has recently obtained remarkable achievements. This volume provides an up-to-date overview of the status and perspectives of two areas of research in PDEs, related to hyperbolic conservation laws. The captivating volume contains surveys of recent deep results and provides an overview of further developments and related open problems. Readers should have basic knowledge of PDE and measure theory.

Trends in Control Theory and Partial Differential Equations (Paperback, 1st ed. 2019): Fatiha Alabau-Boussouira, Fabio Ancona,... Trends in Control Theory and Partial Differential Equations (Paperback, 1st ed. 2019)
Fatiha Alabau-Boussouira, Fabio Ancona, Alessio Porretta, Carlo Sinestrari
R4,011 Discovery Miles 40 110 Ships in 18 - 22 working days

This book presents cutting-edge contributions in the areas of control theory and partial differential equations. Over the decades, control theory has had deep and fruitful interactions with the theory of partial differential equations (PDEs). Well-known examples are the study of the generalized solutions of Hamilton-Jacobi-Bellman equations arising in deterministic and stochastic optimal control and the development of modern analytical tools to study the controllability of infinite dimensional systems governed by PDEs. In the present volume, leading experts provide an up-to-date overview of the connections between these two vast fields of mathematics. Topics addressed include regularity of the value function associated to finite dimensional control systems, controllability and observability for PDEs, and asymptotic analysis of multiagent systems. The book will be of interest for both researchers and graduate students working in these areas.

Mathematical Paradigms of Climate Science (Paperback, Softcover reprint of the original 1st ed. 2016): Fabio Ancona, Piermarco... Mathematical Paradigms of Climate Science (Paperback, Softcover reprint of the original 1st ed. 2016)
Fabio Ancona, Piermarco Cannarsa, Christopher Jones, Alessandro Portaluri
R1,408 Discovery Miles 14 080 Ships in 18 - 22 working days

This book, featuring a truly interdisciplinary approach, provides an overview of cutting-edge mathematical theories and techniques that promise to play a central role in climate science. It brings together some of the most interesting overview lectures given by the invited speakers at an important workshop held in Rome in 2013 as a part of MPE2013 ("Mathematics of Planet Earth 2013"). The aim of the workshop was to foster the interaction between climate scientists and mathematicians active in various fields linked to climate sciences, such as dynamical systems, partial differential equations, control theory, stochastic systems, and numerical analysis. Mathematics and statistics already play a central role in this area. Likewise, computer science must have a say in the efforts to simulate the Earth's environment on the unprecedented scale of petabytes. In the context of such complexity, new mathematical tools are needed to organize and simplify the approach. The growing importance of data assimilation techniques for climate modeling is amply illustrated in this volume, which also identifies important future challenges.

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