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Handbook of Mathematical Geodesy - Bog

- Functional Analytic and Potential Theoretic Methods

Bag om Handbook of Mathematical Geodesy

Written by leading experts, this book provides a clear and comprehensive survey of the ¿status quö of the interrelating process and cross-fertilization of structures and methods in mathematical geodesy. Starting with a foundation of functional analysis, potential theory, constructive approximation, special function theory, and inverse problems, readers are subsequently introduced to today¿s least squares approximation, spherical harmonics reflected spline and wavelet concepts, boundary value problems, Runge-Walsh framework, geodetic observables, geoidal modeling, ill-posed problems and regularizations, inverse gravimetry, and satellite gravity gradiometry. All chapters are self-contained and can be studied individually, making the book an ideal resource for both graduate students and active researchers who want to acquaint themselves with the mathematical aspects of modern geodesy.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9783030096229
  • Indbinding:
  • Paperback
  • Sideantal:
  • 932
  • Udgivet:
  • 22. december 2018
  • Udgave:
  • 12018
  • Størrelse:
  • 155x235x0 mm.
  • Vægt:
  • 1425 g.
  • 8-11 hverdage.
  • 10. december 2024
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Forlænget returret til d. 31. januar 2025

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Prøv i 30 dage for 45 kr.
Herefter fra 79 kr./md. Ingen binding.

Beskrivelse af Handbook of Mathematical Geodesy

Written by leading experts, this book provides a clear and comprehensive survey of the ¿status quö of the interrelating process and cross-fertilization of structures and methods in mathematical geodesy. Starting with a foundation of functional analysis, potential theory, constructive approximation, special function theory, and inverse problems, readers are subsequently introduced to today¿s least squares approximation, spherical harmonics reflected spline and wavelet concepts, boundary value problems, Runge-Walsh framework, geodetic observables, geoidal modeling, ill-posed problems and regularizations, inverse gravimetry, and satellite gravity gradiometry. All chapters are self-contained and can be studied individually, making the book an ideal resource for both graduate students and active researchers who want to acquaint themselves with the mathematical aspects of modern geodesy.

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