Result for 0CD64B9FCE0681581EE75449B80108284F2F5253

Query result

Key Value
FileName./usr/lib/debug/usr/lib/libr12-stable.so.1.0.0
FileSize5379184
MD5F70C8AEBD4AA375086348D75BB6261C8
SHA-10CD64B9FCE0681581EE75449B80108284F2F5253
SHA-2565573151E436CE6B3E348EA6C67AA33C2BBE80A8F75F48D8330511734DDD23EC3
SSDEEP24576:at1Bw065ntfddIuYVD/bJxeeOVRYJ8An3OB/EbH8E5:vPFb/8
TLSHT10A46E75C9F9C1A4ED59102B56DE70DB25379C79E7D220E2F065020383AACF28BF998F1
hashlookup:parent-total1
hashlookup:trust55

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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
FileSize2697366
MD570CA54A4CB263D9FD96CB3C94452C288
PackageDescriptionEvaluate the integrals in modern atomic and molecular theory (debug) The LIBINT library is used to evaluate the traditional (electron repulsion) and certain novel two-body matrix elements (integrals) over Cartesian Gaussian functions used in modern atomic and molecular theory. The idea of the library is to let computer write optimized code for computing such integrals. There are two primary advantages to this: much less human effort is required to write code for computing new integrals, and code can be optimized specifically for a particular computer architecture (e.g., vector processor). . LIBINT has been utilized to implement methods such as Hartree-Fock (HF) and Kohn-Sham density functional theory (KS DFT), second-order Moeller-Plesset perturbation theory (MP2), coupled cluster singles and doubles (CCSD) method, as well as explicitly correlated R12 methods. . This package contains the detached debugging symbols.
PackageMaintainerDebichem Team <debichem-devel@lists.alioth.debian.org>
PackageNamelibint-dbg
PackageSectiondebug
PackageVersion1.1.6-2+b1
SHA-176C3BA5B3F9A5B0C3254DCD888480FF6398757D3
SHA-256F2CE6554AE9A604A0E22955533E9611C4C174824E1BE7DA0A299A6138382235B