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Vorticity, Statistical Mechanics, and Monte Carlo Simulation (Hardcover, 2007 ed.): Chjan Lim, Joseph Nebus Vorticity, Statistical Mechanics, and Monte Carlo Simulation (Hardcover, 2007 ed.)
Chjan Lim, Joseph Nebus
R2,813 Discovery Miles 28 130 Ships in 18 - 22 working days

This book is drawn from across many active fields of mathematics and physics. It has connections to atmospheric dynamics, spherical codes, graph theory, constrained optimization problems, Markov Chains, and Monte Carlo methods. It addresses how to access interesting, original, and publishable research in statistical modeling of large-scale flows and several related fields. The authors explicitly reach around the major branches of mathematics and physics, showing how the use of a few straightforward approaches can create a cornucopia of intriguing questions and the tools to answer them.

Vortex Dynamics, Statistical Mechanics, And Planetary Atmospheres (Hardcover): Chjan C. Lim, Xueru Ding, Joseph Nebus Vortex Dynamics, Statistical Mechanics, And Planetary Atmospheres (Hardcover)
Chjan C. Lim, Xueru Ding, Joseph Nebus
R3,057 Discovery Miles 30 570 Ships in 18 - 22 working days

Vortex Dynamics, Statistical Mechanics, and Planetary Atmospheres introduces the reader with a background in either fluid mechanics or statistical mechanics to the modeling of planetary atmospheres by barotropic and shallow-water models. These potent models are introduced in both analytical and numerical treatments highlighting the ways both approaches inform and enlighten the other. This book builds on Vorticity, Statistical Mechanics, and Monte Carlo Simulations by Lim and Nebus in providing a rare introduction to this intersection of research fields. While the book reaches the cutting edge of atmospheric models, the exposition requires little more than an undergraduate familiarity with the relevant fields of study, and so this book is well suited to individuals hoping to swiftly learn an exciting new field of study. With inspiration drawn from the atmospheres of Venus and of Jupiter, the physical relevance of the work is never far from consideration, and the bounty of results shows a new and fruitful perspective with which to study planetary atmospheres.

Vortex Dynamics, Statistical Mechanics, And Planetary Atmospheres (Paperback): Chjan C. Lim, Xueru Ding, Joseph Nebus Vortex Dynamics, Statistical Mechanics, And Planetary Atmospheres (Paperback)
Chjan C. Lim, Xueru Ding, Joseph Nebus
R1,834 Discovery Miles 18 340 Ships in 10 - 15 working days

Vortex Dynamics, Statistical Mechanics, and Planetary Atmospheres introduces the reader with a background in either fluid mechanics or statistical mechanics to the modeling of planetary atmospheres by barotropic and shallow-water models. These potent models are introduced in both analytical and numerical treatments highlighting the ways both approaches inform and enlighten the other. This book builds on Vorticity, Statistical Mechanics, and Monte Carlo Simulations by Lim and Nebus in providing a rare introduction to this intersection of research fields. While the book reaches the cutting edge of atmospheric models, the exposition requires little more than an undergraduate familiarity with the relevant fields of study, and so this book is well suited to individuals hoping to swiftly learn an exciting new field of study. With inspiration drawn from the atmospheres of Venus and of Jupiter, the physical relevance of the work is never far from consideration, and the bounty of results shows a new and fruitful perspective with which to study planetary atmospheres.

Vorticity, Statistical Mechanics, and Monte Carlo Simulation (Paperback, Softcover reprint of hardcover 1st ed. 2007): Chjan... Vorticity, Statistical Mechanics, and Monte Carlo Simulation (Paperback, Softcover reprint of hardcover 1st ed. 2007)
Chjan Lim, Joseph Nebus
R2,655 Discovery Miles 26 550 Ships in 18 - 22 working days

This book is drawn from across many active fields of mathematics and physics. It has connections to atmospheric dynamics, spherical codes, graph theory, constrained optimization problems, Markov Chains, and Monte Carlo methods. It addresses how to access interesting, original, and publishable research in statistical modeling of large-scale flows and several related fields. The authors explicitly reach around the major branches of mathematics and physics, showing how the use of a few straightforward approaches can create a cornucopia of intriguing questions and the tools to answer them.

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