Key | Value |
---|---|
FileName | ./usr/share/doc/melting/html/img135.png |
FileSize | 301 |
MD5 | 86ADB02F167C1443EC71A9BA83091B21 |
SHA-1 | 0541AF033C452DD2F8F3F1407A0E8132C5D8582A |
SHA-256 | BB225E3B7CE043A39A401917048BB86A480AAAE5502A9FA9C79F193E3D9A5333 |
SSDEEP | 6:6v/lhPh1fg3NDSCPIlRgh3+rP/90rncb1B1XHrKJJ3x80qbszepRubohlsup:6v/77qNDv+Rghk90zcH13rKJU8zepo5c |
TLSH | T1AAE0E7E1F33C7C25DE5BE7734868251A9F240405F5127500058210BF5C09243D00276F |
hashlookup:parent-total | 2 |
hashlookup:trust | 60 |
The searched file hash is included in 2 parent files which include package known and seen by metalookup. A sample is included below:
Key | Value |
---|---|
FileSize | 3480732 |
MD5 | 69ACB554FC31A283E9762CC4522C5546 |
PackageDescription | compute the melting temperature of nucleic acid duplex This program computes, for a nucleic acid duplex, the enthalpy, the entropy and the melting temperature of the helix-coil transitions. Three types of hybridisation are possible: DNA/DNA, DNA/RNA, and RNA/RNA. The program first computes the hybridisation enthalpy and entropy from the elementary parameters of each Crick's pair by the nearest-neighbor method. Then the melting temperature is computed. The set of thermodynamic parameters can be easily changed, for instance following an experimental breakthrough. |
PackageMaintainer | Ubuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com> |
PackageName | melting |
PackageSection | science |
PackageVersion | 5.2.0-2 |
SHA-1 | BBFA5E5952859B1D98689F55C7EDB66F91C8E478 |
SHA-256 | 3E5D70975CD4C5A5BA582F7E6A8162565C98A1E22CC159EBFD42B66021DCE75C |
Key | Value |
---|---|
FileSize | 3486504 |
MD5 | D95C69CED5C5F4E00DA4B719CEFB3FD1 |
PackageDescription | compute the melting temperature of nucleic acid duplex This program computes, for a nucleic acid duplex, the enthalpy, the entropy and the melting temperature of the helix-coil transitions. Three types of hybridisation are possible: DNA/DNA, DNA/RNA, and RNA/RNA. The program first computes the hybridisation enthalpy and entropy from the elementary parameters of each Crick's pair by the nearest-neighbor method. Then the melting temperature is computed. The set of thermodynamic parameters can be easily changed, for instance following an experimental breakthrough. |
PackageMaintainer | Ubuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com> |
PackageName | melting |
PackageSection | science |
PackageVersion | 5.2.0-1 |
SHA-1 | B13A43A055D238B2CA1EC84AE143097E3BBFD5EC |
SHA-256 | 9C093115297FE929A3D5364A86F15A6AEA55DB10D8DF9FF9288FF9EA34C20CD2 |