Key | Value |
---|---|
FileName | ./usr/bin/hist2workspace |
FileSize | 63348 |
MD5 | 216245F7F13FA0E1918246EAD5B04181 |
SHA-1 | 19A4FCDD9F6D9E1CE1793525EADB3B0EA7034E36 |
SHA-256 | B6E8889262AB8661F514421A4BE26BCC7429D49CEFC133ADC393A5E5892DC456 |
SSDEEP | 1536:t7+mfh7Qpt1Or+jCOnySIijvVAX6f/Zct76lf:t7+mSgr+jCOyYjdAWBct2l |
TLSH | T168535CE6F8354D13C9A83EF830D2D700BE78D0CAC79A0258D561239AAC56E54663BFDD |
hashlookup:parent-total | 1 |
hashlookup:trust | 55 |
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 |
---|---|
FileSize | 3305952 |
MD5 | 8C20C30A0BF7B84903582DD15FEB6D15 |
PackageDescription | ROOT extension for modeling expected distributions - libraries The ROOT system provides a set of OO frameworks with all the functionality needed to handle and analyze large amounts of data efficiently. . The RooFit packages provide a toolkit for modeling the expected distribution of events in a physics analysis. Models can be used to perform likelihood fits, produce plots, and generate "toy Monte Carlo" samples for various studies. The RooFit tools are integrated with the object-oriented and interactive ROOT graphical environment. . RooFit has been developed for the BaBar collaboration, a high energy physics experiment at the Stanford Linear Accelerator Center, and is primarily targeted to the high-energy physicists using the ROOT analysis environment, but the general nature of the package make it suitable for adoption in different disciplines as well. |
PackageMaintainer | Debian Science Maintainers <debian-science-maintainers@lists.alioth.debian.org> |
PackageName | libroot-roofit5.34 |
PackageSection | libs |
PackageVersion | 5.34.19+dfsg-1.2 |
SHA-1 | 564B299124984831AA14C91C4EB59A200C526FBC |
SHA-256 | 42910BBBC6CC7D2A42065FB526F2491C5DC5990031039AB4F4A1E07EA24881D0 |