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[Lecture Notes in Mathematics] Spherical Harmonics and Approximations on the Unit Sphere: An Introduction Volume 2044 || Approximation Theory

✍ Scribed by Atkinson, Kendall; Han, Weimin


Book ID
111889921
Publisher
Springer Berlin Heidelberg
Year
2012
Tongue
German
Weight
445 KB
Edition
2012
Category
Article
ISBN
3642259839

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✦ Synopsis


These notes provide an introduction to the theory of spherical harmonics in an arbitrary dimension as well as an overview of classical and recent results on some aspects of the approximation of functions by spherical polynomials and numerical integration over the unit sphere. The notes are intended for graduate students in the mathematical sciences and researchers who are interested in solving problems involving partial differential and integral equations on the unit sphere, especially on the unit sphere in three-dimensional Euclidean space. Some related work for approximation on the unit disk in the plane is also briefly discussed, with results being generalizable to the unit ball in more dimensions.


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✍ Atkinson, Kendall; Han, Weimin πŸ“‚ Article πŸ“… 2012 πŸ› Springer Berlin Heidelberg 🌐 German βš– 701 KB

These notes provide an introduction to the theory of spherical harmonics in an arbitrary dimension as well as an overview of classical and recent results on some aspects of the approximation of functions by spherical polynomials and numerical integration over the unit sphere. The notes are intended

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These notes provide an introduction to the theory of spherical harmonics in an arbitrary dimension as well as an overview of classical and recent results on some aspects of the approximation of functions by spherical polynomials and numerical integration over the unit sphere. The notes are intended

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✍ Atkinson, Kendall; Han, Weimin πŸ“‚ Article πŸ“… 2012 πŸ› Springer Berlin Heidelberg 🌐 German βš– 392 KB

These notes provide an introduction to the theory of spherical harmonics in an arbitrary dimension as well as an overview of classical and recent results on some aspects of the approximation of functions by spherical polynomials and numerical integration over the unit sphere. The notes are intended