Numerical Methods for Structured Matrices and Applications The Georg Heinig Memorial Volume /

Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Bini, Dario Andrea (Editor), Mehrmann, Volker (Editor), Olshevsky, Vadim (Editor), Tyrtyshnikov, Eugene E. (Editor), Barel, Marc van (Editor)
Format: Electronic eBook
Language:English
Published: Basel : Birkhäuser Basel, 2010.
Series:Operator Theory: Advances and Applications ; 199
Subjects:
Online Access:Full Text via HEAL-Link
Table of Contents:
  • Georg Heinig
  • Georg Heinig (1947—2005) In Memoriam
  • Georg Heinig November 24, 1947 - May 10, 2005 A Personal Memoir and Appreciation
  • to Bezoutians
  • On Matrices that are not Similar to a Toeplitz Matrix and a Family of Polynomials Tewodros Amdeberhan and Georg Heinig
  • Research Contributions
  • A Traub-like Algorithm for Hessenbergquasiseparable- Vandermonde Matrices of Arbitrary Order
  • A Fast Algorithm for Approximate Polynomial GCD Based on Structured Matrix Computations
  • On Inertia of Some Structured Hermitian Matrices
  • Variable-coefficient Toeplitz Matrices with Symbols beyond the Wiener Algebra
  • A Priori Estimates on the Structured Conditioning of Cauchy and Vandermonde Matrices
  • Factorizations of Totally Negative Matrices
  • QR-factorization of Displacement Structured Matrices Using a Rank Structured Matrix Approach
  • Bezoutians Applied to Least Squares Approximation of Rational Functions
  • On the Weyl Matrix Balls Corresponding to the Matricial Carathéodory Problem in Both Nondegenerate and Degenerate Cases
  • On Extremal Problems of Interpolation Theory with Unique Solution
  • O(n) Algorithms for Banded Plus Semiseparable Matrices
  • Unified Nearly Optimal Algorithms for Structured Integer Matrices
  • V-cycle Optimal Convergence for DCT-III Matrices
  • The Ratio Between the Toeplitz and the Unstructured Condition Number
  • A New Algorithm for Finding Positive Eigenvectors for a Class of Nonlinear Operators Associated with M-matrices
  • Hankel Minors and Pade Approximations.