Result for 018A194E7E1D7872CB1B0BFCC24C6110ED193ABD

Query result

Key Value
FileName./usr/share/cain/help/SAfSB/Chapter2/Example-2_12-Schlogl-S.pdf
FileSize12494
MD539CDB981251E9DE3615D25F514A97C9F
SHA-1018A194E7E1D7872CB1B0BFCC24C6110ED193ABD
SHA-256583601CAE9C8DD223E4D5720695190A0F06BF69924EF70086FB80FC2A9196677
SSDEEP192:WPVWIjrLXS8ax6bDLREhMQ3aqBLrVntguEceG0ghrPJvkXV0NVKAHA6:WPVWAGx6eMQ3ayLrtjEceNghrxwQKAg6
TLSHT12942F858D46ACC9CE8428680D43F359C5ADCB397C6E828D1282C4E47B58ED99FC578FB
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
FileSize16622470
MD57CCEE815F28B86F2855024A383DE9B66
PackageDescriptionsimulations of chemical reactions Cain performs stochastic and deterministic simulations of chemical reactions. It can spawn multiple simulation processes to utilize multi-core computers. It stores models, methods, and simulation output (populations and reaction counts) in an XML format. In addition, SBML models can be imported and exported. The models and methods can be read from input files or edited within the program. . The GUI (Graphical User Interface) is written in Python and uses the wxPython toolkit. Most of the solvers are implemented as command line executables, written in C++, which are driven by Cain. This makes it easy to launch batch jobs. It also simplifies the process of adding new solvers. Cain offers a variety of solvers: * Gillespie's direct method. * Gillespie's first reaction method. * Gibson and Bruck's next reaction method. * Tau-leaping. * Hybrid direct/tau-leaping. * ODE integration. . This package provides the architecture independent files for cain
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamecain
PackageSectionscience
PackageVersion1.9-2
SHA-1B170248E5841EDDFB39AC5F23655674D4033FE2C
SHA-25655BC742B818EB6148843A7E35874C90DFB7C437A762B5CCD028D74A6A60C41DD