Result for 006D2088C7A0A68FF32EB88FD1580D2B16BC5EDE

Query result

Key Value
FileName./usr/share/doc/libkim-api-dev/examples/simulators/simulator-model-example/simulator-model-example.cpp
FileSize4612
MD55FFECA1B38AB7FA7FFA60A6A6A78D9D7
SHA-1006D2088C7A0A68FF32EB88FD1580D2B16BC5EDE
SHA-2567ECEBD04A7833B08725C1317324AEECA03F55285CF7336033A496037C03DD752
SSDEEP96:0oyykjJeXNbMdfVWxedC+iABN70UWnSK+daizlR87exJ15fGmCrt:0jJQNbk9WxcC+iABNgSKaaizLHfCrt
TLSHT19691040589763F322617DF25573E001B791A8007EB349B51B6DF059ABF165122EF22F3
hashlookup:parent-total1
hashlookup:trust55

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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
FileSize140732
MD571D88FF0DFF8881EBE041B9F974D47A0
PackageDescriptionDocumentation and examples for KIM-API The KIM API is an Application Programming Interface for atomistic simulations. The API provides a standard for exchanging information between atomistic simulation codes (molecular dynamics, molecular statics, lattice dynamics, Monte Carlo, etc.) and interatomic models (potentials or force fields). It also includes a set of library routines for using the API with bindings for: . FORTRAN 77, Fortran 90/95, Fortran 2003 C, C++ . Atomistic simulation codes that support the KIM API work seamlessly with the KIM-compliant interatomic models (KIM Models) distributed on this website. The interface is computationally efficient and often requires relatively minor changes to existing codes. . This package contains documentation and examples
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamelibkim-api-doc
PackageSectionlibs
PackageVersion2.1.3-5build1
SHA-10746CF2DD52B9B1D32B2569AC03CCF1A2C9A8684
SHA-2567C761E2F17CB66998F282E35D99BCC831907E1A3282010DE1932103D95BC3711