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  • 1
    Online Resource
    Online Resource
    Cambridge : Cambridge University Press
    Keywords: Atmospheric diffusion Mathematical models. ; Dynamic meteorology Mathematical models. ; Inverse problems (Differential equations) ; Atmospheric diffusion Mathematical models ; Dynamic meteorology Mathematical models ; Inverse problems (Differential equations) ; Dynamic meteorology Mathematical models ; Atmospheric diffusion Mathematical models ; Atmospheric diffusion Mathematical models. ; Dynamic meteorology Mathematical models. ; Inverse problems (Differential equations) ; TECHNOLOGY & ENGINEERING ; Environmental ; Pollution Control ; Dynamic meteorology ; Mathematical models ; Inverse problems (Differential equations) ; Atmospheric diffusion ; Mathematical models ; Atmospheric diffusion ; Mathematical models ; Dynamic meteorology ; Mathematical models ; Inverse problems (Differential equations) ; Atmosphäre ; Inverses Problem ; Transport ; Electronic books. ; Electronic books ; Electronic book ; Electronic books. ; Electronic books ; Atmosphäre ; Dynamische Meteorologie ; Mathematisches Modell
    Description / Table of Contents: Principles -- Atmospheric transport and transport models -- Estimation -- Time series estimation -- Observations of atmospheric composition -- The sources and sinks -- Problem formulation -- Ill-conditioning -- Analysis of model error -- Green's functions and synthesis inversion -- Time-stepping inversions -- Non-linear inversion techniques -- Experimental design -- Recent Applications -- Global carbon dioxide -- Global methane -- Halocarbons and other global-scale studies -- Regional inversions -- Constraining atmospheric transport
    Type of Medium: Online Resource
    Pages: xv, 392 p , ill , 25 cm
    Edition: Boulder, Colo NetLibrary 2004 Online-Ressource E-Books von NetLibrary
    ISBN: 0511064578 , 9780521812108 , 0521812100 , 9780511064579 , 0511058241 , 9780511058240 , 0511073038 , 9780511073038
    Series Statement: Cambridge atmospheric and space science series
    Language: English
    Note: Includes bibliographical references (p. 352-388) and index , Electronic reproduction, Boulder, Colo : NetLibrary, 2004 , Principles -- Atmospheric transport and transport models -- Estimation -- Time series estimation -- Observations of atmospheric composition -- The sources and sinks -- Problem formulation -- Ill-conditioning -- Analysis of model error -- Green's functions and synthesis inversion -- Time-stepping inversions -- Non-linear inversion techniques -- Experimental design -- Recent Applications -- Global carbon dioxide -- Global methane -- Halocarbons and other global-scale studies -- Regional inversions -- Constraining atmospheric transport
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of statistical physics 22 (1980), S. 465-489 
    ISSN: 1572-9613
    Keywords: Lattice statistics ; series expansions ; corner transfer matrices
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract We have studied the hard-square lattice gas, using corner transfer matrices. In particular, we have obtained the first 24 terms of the high-density series for the order parameterρ 2−ρ 1. From these we estimate the critical activity to be 3.7962±0.0001. This is in excellent agreement with the earlier work of Gaunt and Fisher. It conflicts with the value 4.0 given by Müller-Hartmann and Zittartz's formula for the critical point of the antiferromagnetic Ising model in a field, so we conclude that this formula, while a good approximation, is not exact.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Journal of statistical physics 21 (1979), S. 103-123 
    ISSN: 1572-9613
    Keywords: Lattice models ; series expansions ; corner transfer matrices
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract The corner transfer matrix formalism is used to obtain low-temperature series expansions for the square lattice Ising model in a field. This algebraic technique appears to be far more efficient than conventional methods based on combinatorial enumeration.
    Type of Medium: Electronic Resource
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