Result for 051A2F55CE53A633A8B3B844C71771342082A7E2

Query result

Key Value
FileName./usr/share/doc/libchemps2/html/searchindex.js
FileSize18573
MD510C52ABF1B77D8840E4AF3DE446889E2
SHA-1051A2F55CE53A633A8B3B844C71771342082A7E2
SHA-256760D2BD60BE3926FA673930882681750EEAC2A8D2069B184F410019E9B87D309
SSDEEP384:P6TFhXiSnbKx47FQZvvU22dJsJmQz/5K62zvThpNgJ+5NgUMzjwz8P0NzaQgAsfn:P6TLSSy47WZvvU22daJpz/5K62zvT3uF
TLSHT10882A8F306992D1B229ED997DE44C3C9211A200A6A799AC0DEF1857F21D3B8D323CD77
hashlookup:parent-total3
hashlookup:trust65

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Parents (Total: 3)

The searched file hash is included in 3 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize510992
MD5FD198EE4006867EC64E3E2DAB2AE5CAA
PackageDescriptionDocumentation of the libchemps2-3 package chemps2 is a scientific library which contains a spin-adapted implementation of the density matrix renormalization group (DMRG) for ab initio quantum chemistry. This wavefunction method allows one to obtain numerical accuracy in active spaces beyond the capabilities of full configuration interaction (FCI), and allows one to extract the 2-, 3-, and 4-particle reduced density matrices (2-, 3- and 4-RDM) of the active space. . For general active spaces up to 40 electrons in 40 orbitals can be handled with DMRG, and for one-dimensional active spaces up to 100 electrons in 100 orbitals. The 2-RDM of these active spaces can also be easily extracted, while the 3- and 4-RDM are limited to about 28 orbitals. . When the active space size becomes prohibitively expensive for FCI, DMRG can be used to replace the FCI solver in the complete active space self consistent field (CASSCF) method and the corresponding complete active space second order perturbation theory (CASPT2). The corresponding methods are called DMRG-SCF and DMRG-CASPT2, respectively. For DMRG-SCF the active space 2-RDM is required, and for DMRG-CASPT2 the active space 4-RDM. . This is the common documentation package.
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamechemps2-doc
PackageSectiondoc
PackageVersion1.8.9-1build1
SHA-1D9996F79E7D420422BC97A7E9F19E8AD7BCBD197
SHA-2560CE254C7ED36D996D12D175815C17FB40B1633909D26142688B13F4E1A54D370
Key Value
FileSize513468
MD50D6B0B96DC5D1AAAC1DB3D86B93EB2A1
PackageDescriptionDocumentation of the libchemps2-3 package chemps2 is a scientific library which contains a spin-adapted implementation of the density matrix renormalization group (DMRG) for ab initio quantum chemistry. This wavefunction method allows one to obtain numerical accuracy in active spaces beyond the capabilities of full configuration interaction (FCI), and allows one to extract the 2-, 3-, and 4-particle reduced density matrices (2-, 3- and 4-RDM) of the active space. . For general active spaces up to 40 electrons in 40 orbitals can be handled with DMRG, and for one-dimensional active spaces up to 100 electrons in 100 orbitals. The 2-RDM of these active spaces can also be easily extracted, while the 3- and 4-RDM are limited to about 28 orbitals. . When the active space size becomes prohibitively expensive for FCI, DMRG can be used to replace the FCI solver in the complete active space self consistent field (CASSCF) method and the corresponding complete active space second order perturbation theory (CASPT2). The corresponding methods are called DMRG-SCF and DMRG-CASPT2, respectively. For DMRG-SCF the active space 2-RDM is required, and for DMRG-CASPT2 the active space 4-RDM. . This is the common documentation package.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamechemps2-doc
PackageSectiondoc
PackageVersion1.8.9-1
SHA-127F291A50A341E3AD854E47C4FC5AABDB2E64388
SHA-256FEBF1AEEC1D19D7001291CB9CDA66D3D68F586453F35167178D428441E3C3FE0
Key Value
FileSize511000
MD558ACC2F1CED97E18FEE1F918D7935B48
PackageDescriptionDocumentation of the libchemps2-3 package chemps2 is a scientific library which contains a spin-adapted implementation of the density matrix renormalization group (DMRG) for ab initio quantum chemistry. This wavefunction method allows one to obtain numerical accuracy in active spaces beyond the capabilities of full configuration interaction (FCI), and allows one to extract the 2-, 3-, and 4-particle reduced density matrices (2-, 3- and 4-RDM) of the active space. . For general active spaces up to 40 electrons in 40 orbitals can be handled with DMRG, and for one-dimensional active spaces up to 100 electrons in 100 orbitals. The 2-RDM of these active spaces can also be easily extracted, while the 3- and 4-RDM are limited to about 28 orbitals. . When the active space size becomes prohibitively expensive for FCI, DMRG can be used to replace the FCI solver in the complete active space self consistent field (CASSCF) method and the corresponding complete active space second order perturbation theory (CASPT2). The corresponding methods are called DMRG-SCF and DMRG-CASPT2, respectively. For DMRG-SCF the active space 2-RDM is required, and for DMRG-CASPT2 the active space 4-RDM. . This is the common documentation package.
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamechemps2-doc
PackageSectiondoc
PackageVersion1.8.8-1
SHA-1D26F09B22DBECE11582342C28ED43505AF8DD8E9
SHA-25633767A38231A2D8FE56AA908B0E48B0971E071E0E5112AB54448CC9BB70F5FBD