Result for 0001AF46393DE1CB450F72EBCF4AB56E23EC3B77

Query result

Key Value
FileName./usr/share/doc/rheolef-doc/examples/embankment.cc
FileSize1625
MD5F9BEC9FF20239481CB9529CF67D6992A
SHA-10001AF46393DE1CB450F72EBCF4AB56E23EC3B77
SHA-25696E449C7733D68C8F4169F2E3CA232B9EAF88474F6E1B6673598257E426C76C8
SSDEEP24:sI8p2ezJeQkYyaOkHjGTbV7yj7vjlduVupUAilATFQxaDJbg/PrC4T:sTHz8QlyqHdvCA8AT6xaDJbkWk
TLSHT1F131950464E993391C733D516C0E59D3AF5A52E8F1AA96E520BF83418F02B2132E65A3
hashlookup:parent-total6
hashlookup:trust80

Network graph view

Parents (Total: 6)

The searched file hash is included in 6 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize22289376
MD5D418446C5DED1746A0212CA0A7D7C842
PackageDescriptionefficient Finite Element environment - documentation Rheolef is a computer environment that serves as a convenient laboratory for computations in applied mathematics involving finite element-like methods. It provides a set of commands and C++ algorithms and containers. . Most basically, containers cover the classic graph data structure for sparse matrix formats and finite element meshes. At a higher level of abstraction, they can handle approximate finite element spaces, discrete fields. Flexible and powerful expressions are used to specify bilinear forms. . Current applications include: * massively distributed memory finite element environment, based on MPI; * elasticity, Stokes and Navier-Stokes problems in 2D and 3D; * complex fluids applications: viscoplasticity, viscoelasticity, wall slip; * nonlinear problems with fixed-point, Newton and continuation methods; * high order polynomials, mixed elements and discontinuous Galerkin methods; * auto-adaptive mesh approaches; * axisymmetric problems; * multi-regions and variable coefficient problems. . This package provides the documentation.
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamerheolef-doc
PackageSectiondoc
PackageVersion7.1-6
SHA-10D486C3B845FD540D3B80AECA3D7C6163B773C0B
SHA-256D6CE55C0CD8E7F6D43C6016A32F640F6D46E052A20808FFD2CD7EA29C7163C76
Key Value
FileSize22186440
MD58085FABF3211EB88CF8CE388C67ED360
PackageDescriptionefficient Finite Element environment - documentation Rheolef is a computer environment that serves as a convenient laboratory for computations in applied mathematics involving finite element-like methods. It provides a set of commands and C++ algorithms and containers. . Most basically, containers cover the classic graph data structure for sparse matrix formats and finite element meshes. At a higher level of abstraction, they can handle approximate finite element spaces, discrete fields. Flexible and powerful expressions are used to specify bilinear forms. . Current applications include: * massively distributed memory finite element environment, based on MPI; * elasticity, Stokes and Navier-Stokes problems in 2D and 3D; * complex fluids applications: viscoplasticity, viscoelasticity, wall slip; * nonlinear problems with fixed-point, Newton and continuation methods; * high order polynomials, mixed elements and discontinuous Galerkin methods; * auto-adaptive mesh approaches; * axisymmetric problems; * multi-regions and variable coefficient problems. . This package provides the documentation.
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamerheolef-doc
PackageSectiondoc
PackageVersion7.1-1
SHA-16A3C042E0D1668049E3DE6553A24D7EA38EB8087
SHA-2565500BA2DF741A5E24D7FDFFDBD762D516D6B030651B6BEE23765E874891A7302
Key Value
FileSize22125680
MD5B4B4D83511A1494A5238255A0681AAB5
PackageDescriptionefficient Finite Element environment - documentation Rheolef is a computer environment that serves as a convenient laboratory for computations in applied mathematics involving finite element-like methods. It provides a set of commands and C++ algorithms and containers. . Most basically, containers cover the classic graph data structure for sparse matrix formats and finite element meshes. At a higher level of abstraction, they can handle approximate finite element spaces, discrete fields. Flexible and powerful expressions are used to specify bilinear forms. . Current applications include: * massively distributed memory finite element environment, based on MPI; * elasticity, Stokes and Navier-Stokes problems in 2D and 3D; * complex fluids applications: viscoplasticity, viscoelasticity, wall slip; * nonlinear problems with fixed-point, Newton and continuation methods; * high order polynomials, mixed elements and discontinuous Galerkin methods; * auto-adaptive mesh approaches; * axisymmetric problems; * multi-regions and variable coefficient problems. . This package provides the documentation.
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamerheolef-doc
PackageSectiondoc
PackageVersion7.1-1build1
SHA-182AF4922B5E41249FD5D3EE07715B2D1328BD1F2
SHA-256D4A5B893E13E7A9F9449119C7EC44B908F8FB31DC09CD198620D6175524D21D5
Key Value
FileSize22121400
MD555F0CD8BF05E7E28EF6566A977ED4516
PackageDescriptionefficient Finite Element environment - documentation Rheolef is a computer environment that serves as a convenient laboratory for computations in applied mathematics involving finite element-like methods. It provides a set of commands and C++ algorithms and containers. . Most basically, containers cover the classic graph data structure for sparse matrix formats and finite element meshes. At a higher level of abstraction, they can handle approximate finite element spaces, discrete fields. Flexible and powerful expressions are used to specify bilinear forms. . Current applications include: * massively distributed memory finite element environment, based on MPI; * elasticity, Stokes and Navier-Stokes problems in 2D and 3D; * complex fluids applications: viscoplasticity, viscoelasticity, wall slip; * nonlinear problems with fixed-point, Newton and continuation methods; * high order polynomials, mixed elements and discontinuous Galerkin methods; * auto-adaptive mesh approaches; * axisymmetric problems; * multi-regions and variable coefficient problems. . This package provides the documentation.
PackageMaintainerDebian Science Maintainers <debian-science-maintainers@lists.alioth.debian.org>
PackageNamerheolef-doc
PackageSectiondoc
PackageVersion7.1-7
SHA-1A151F5B3872C4E66FE0C80A4380E9B7DAB0BE905
SHA-256D1ECCC297FD62B57C44A2CDB059E9ED3392392965D6DFAEE659AE3C7DF460112
Key Value
FileSize22307188
MD531E6A66FA30D53CA5DCC9C8065AF85E2
PackageDescriptionefficient Finite Element environment - documentation Rheolef is a computer environment that serves as a convenient laboratory for computations in applied mathematics involving finite element-like methods. It provides a set of commands and C++ algorithms and containers. . Most basically, containers cover the classic graph data structure for sparse matrix formats and finite element meshes. At a higher level of abstraction, they can handle approximate finite element spaces, discrete fields. Flexible and powerful expressions are used to specify bilinear forms. . Current applications include: * massively distributed memory finite element environment, based on MPI; * elasticity, Stokes and Navier-Stokes problems in 2D and 3D; * complex fluids applications: viscoplasticity, viscoelasticity, wall slip; * nonlinear problems with fixed-point, Newton and continuation methods; * high order polynomials, mixed elements and discontinuous Galerkin methods; * auto-adaptive mesh approaches; * axisymmetric problems; * multi-regions and variable coefficient problems. . This package provides the documentation.
PackageMaintainerDebian Science Maintainers <debian-science-maintainers@lists.alioth.debian.org>
PackageNamerheolef-doc
PackageSectiondoc
PackageVersion7.1-6
SHA-1AB29FECB71B47BE4195968B8D413523B367DD98C
SHA-256EE76E25B100C9AB1E543220E7FD1FBB46CB9C6B8EA492A2492D03A034C4ADE2E
Key Value
FileSize22189888
MD555BA84532C02287453FDAABE4BA280D0
PackageDescriptionefficient Finite Element environment - documentation Rheolef is a computer environment that serves as a convenient laboratory for computations in applied mathematics involving finite element-like methods. It provides a set of commands and C++ algorithms and containers. . Most basically, containers cover the classic graph data structure for sparse matrix formats and finite element meshes. At a higher level of abstraction, they can handle approximate finite element spaces, discrete fields. Flexible and powerful expressions are used to specify bilinear forms. . Current applications include: * massively distributed memory finite element environment, based on MPI; * elasticity, Stokes and Navier-Stokes problems in 2D and 3D; * complex fluids applications: viscoplasticity, viscoelasticity, wall slip; * nonlinear problems with fixed-point, Newton and continuation methods; * high order polynomials, mixed elements and discontinuous Galerkin methods; * auto-adaptive mesh approaches; * axisymmetric problems; * multi-regions and variable coefficient problems. . This package provides the documentation.
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamerheolef-doc
PackageSectiondoc
PackageVersion7.1-3
SHA-11846098171ECC82D4B6CC9AFEC36EA7EB16ECC63
SHA-256E18ECB8F764ACF4991E3A735395DE99AD159ECE277E2B45A4E01A2CEE9536C11