Key | Value |
---|---|
FileName | ./usr/share/doc/melting/melting/magnesium2.png |
FileSize | 12842 |
MD5 | 0431312171EABAE1981175AFD676BA1B |
SHA-1 | 13E06385C537823132F5383D03546CF65132FC74 |
SHA-256 | 0660C0D7B674BB85E5FD0771B54EA4F6EB8B53362B394ED564772496893D69EA |
SSDEEP | 192:bu0oe6tkqWRMEL8628Ivu0vNp6avC6li05RD9CMwIsA8QIeW5m/op4B4EAnNql7:xn6tkLZVIvuANp6a5fBCbpP5lps2m |
TLSH | T12D429ED751A4BF5347E750205A2436720183E02A7BAEE0290BBD9DBD58B1E2254F7AF3 |
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 | 571572 |
MD5 | 69B4C483C7B7E67CEF0B619769861049 |
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 | 4.3.1+dfsg-2 |
SHA-1 | 467D0E2BCB4EE76663D21CE1BDF29DC1741C9960 |
SHA-256 | 34116B8BE5AD2B3007541F5F408717161F759979978EE5A48391462FFD4B4C1A |
Key | Value |
---|---|
FileSize | 571412 |
MD5 | DC6324DFA16619D6E1998667CD6355D0 |
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 | 4.3.1+dfsg-2 |
SHA-1 | 8B8C63C7836DEDD47BD6CA5579255285FFC75997 |
SHA-256 | 572FC02801C73AF206E40558D81E2A51BE03FDBBC239F811639829ACCF68022C |