Result for 037ED0D3A05C478917594A3B118C461AA629EFA3

Query result

Key Value
FileName./usr/share/doc/mpsolve-doc/structqt__meta__stringdata__xmpsolve____MainQmlView__t.html
FileSize5247
MD58F036EC948DB1133E34B3BACFF76CB9C
SHA-1037ED0D3A05C478917594A3B118C461AA629EFA3
SHA-256F26114956DFBA7143C5770F86893FFB9A7D6EF8A495C807866672713229C06ED
SSDEEP96:aY8ukDo0evRu9b6BniwnyBe/wk88C8f89qG+jpbLWb:4ukDolvOuBniwnyB4wC1nK
TLSHT149B1B3199C9B80378AE211C2F4F1EB6D92C0C618D35A9850A4FCD5EA7B86FCDDD1B61C
hashlookup:parent-total1
hashlookup:trust55

Network graph view

Parents (Total: 1)

The searched file hash is included in 1 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
MD5136B4C410DACADAAABB6EB0341A11698
PackageArchnoarch
PackageDescriptionMPSolve stands for Multiprecision Polynomial SOLVEr. It aims to provide an easy to use universal blackbox for solving polynomials and secular equations. Its features include: - Arbitrary precision approximation. - Guaranteed inclusion radii for the results. - Exploiting of polynomial structures: it can take advantage of sparsity as well as coefficients in a particular domain (i.e. integers or rationals). - It can be specialized for specific classes of polynomials. As an example, the roots of the Mandelbrot polynomial of degree 2,097,151 were computed in about 10 days on a dual Xeon server. This package contains developer documentation for mpsolve.
PackageMaintainerFedora Project
PackageNamempsolve-doc
PackageRelease3.fc33
PackageVersion3.2.1
SHA-10223C219FDA5FF8CA61AF44FA0FBFAD520C42053
SHA-256E580C6882D459118E6431AC670FEBF1C5EAAF5BB8ECD896EAA6E3CBB455BABF7