Result for 277533917361245F661B8F96A9BB0252AF1339ED

Query result

Key Value
FileNamemethod.txt
FileSize5650
MD53B231FD055BDED97F879860B257A42A0
RDS:package_id182052
SHA-1277533917361245F661B8F96A9BB0252AF1339ED
SHA-256593573135709311EA7C7B693DA9D805A0816E1F844D0943C41917B598A0776B4
SSDEEP96:vyNTuGUUpqSkqSM4CFOzn5GL+DNF+EyM4k56W1YqVq7qQqEscafFEJH7TRlGEbWm:6Jr7oIA5WTRVsmqVq7qQqEQEJfRlGJa1
TLSHT136C1409A3BE807F6232B02D539B527CBDBA90B7503CD409A93170A1DE2035B8C75E94F
insert-timestamp1679423669.7809927
sourceRDS.db
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
FileName12666
FileSize511720
MD51CA0110B6895838810B3DF5D9A714750
PackageDescriptionDocumentation of the libchemps2-2 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
PackageVersion1.8.3-2
RDS:package_id182052
SHA-1850453902FA24FEAF6F4F066335DAFDBA88A4AF9
SHA-2563D257EF879D0BEAD7852BA8B322D15F62500E598F2E6550C9195032A40B95582
insert-timestamp1679408380.5494366
sourceRDS.db
Key Value
FileSize510086
MD515BE194DB1CBD26CD4261B5845F2C2F8
PackageDescriptionDocumentation of the libchemps2-2 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
PackageVersion1.8-2
SHA-187D57456214D292088763CBBAFF83B52AF5AAC4A
SHA-256F4019B5F7BE04B5AFBA922CD030F271A77191070EAA6E2DFAC367DEDC3A192BC
Key Value
FileSize513220
MD582D3D4D2533F3601935CD7F8BE5A1B85
PackageDescriptionDocumentation of the libchemps2-2 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
PackageVersion1.8.3-2
SHA-190893842835B158DE8F34B7CF06BF3F30BF04DB7
SHA-256C275ACC0707727D02922DB42F131D94172D4C1A898B85E367F0DC6C1EA30E7C9