Result for FAAC6D25D8836FF3379F82F8DADB9D8D08359642

Query result

Key Value
FileName./usr/lib/debug/usr/lib/libderiv-stable.so.1.0.0
FileSize10722072
MD5452D35B9529C87FDA0CA3BDF03450997
SHA-1FAAC6D25D8836FF3379F82F8DADB9D8D08359642
SHA-2568B6314E0FB703E13A71E9BF3BB71BD6F96CE4FBD3845504435D9A8168BB2A001
SSDEEP49152:pKTsR4GQbACcHoFuoEb7Gbo4dwYkSd96y:pKTsC+zHf7iNvcy
TLSHT1A4B6417C78018045CC29523DDCBABE709E1F1E58647B401B4B8DD63BB1199FAAEF264E
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
FileSize2752784
MD58DFC7BB31DD351B23ECE3400C09D3112
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-14B001169B9E0EB543B5EBB19CF5ECFB50F62383C
SHA-2562D56069330DCDAD493F8975F7FE73E92ABC236A40890D5BF9807EF24FE528211