Infinite-Dimensional Linear Algebra and Solvability of Partial Differential Equations
Analysis of PDEs
2021-06-09 v1
Abstract
We discuss linear algebra of infinite-dimensional vector spaces in terms of algebraic (Hamel) bases. As an application we prove the surjectivity of a large class of linear partial differential operators with smooth (-coefficients) coefficients, called in the article \emph{regular}, acting on the algebraic dual of the space of test-functions . The surjectivity of the partial differential operators guarantees solvability of the corresponding partial differential equations within . We discuss our result in contrast to and comparison with similar results about the restrictions of the regular operators on the space of Schwartz distribution , where these operators are often non-surjective.
Cite
@article{arxiv.2106.04039,
title = {Infinite-Dimensional Linear Algebra and Solvability of Partial Differential Equations},
author = {Todor D. Todorov},
journal= {arXiv preprint arXiv:2106.04039},
year = {2021}
}
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34 pages