Key | Value |
---|---|
FileName | ./usr/share/doc/melting/melting/0_1M.png |
FileSize | 11876 |
MD5 | 0075482A6DFB685F2F93047A0E5A656C |
SHA-1 | 2767CA27A691D60E5DCB4E38C1F4C802D082552F |
SHA-256 | AF9CF24C2961CE87BB3CC2DB38CB154D02363185F2382DA10EDD68030AB2592F |
SSDEEP | 192:Xabzmbw3JWYas3XLPrdJsP3gvebNYJ+Y8n2CCS96fWQhfNgVRWS60:6zmc3JFasHLPhK3gvebNYY2CCSLUeHk0 |
TLSH | T11D32CFE25BA602338529C18CA0D67632F3AC827950313A3FDEF7B7BDDE174648064B58 |
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 | 586198 |
MD5 | 1A8C1DC4163068E8EB8C0F3A036ACA7D |
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-1 |
SHA-1 | F8122EC19DF814D3826BE1C1A1F7671B3D8D9B46 |
SHA-256 | 8DA8728F557F552BE12EBD7A49A6B2E3B5F840327EAE1B77DAECDAB158578969 |
Key | Value |
---|---|
FileSize | 584364 |
MD5 | F51B86A6160BA795FC6E96311A4097C2 |
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-1 |
SHA-1 | AC0E5DF235C392608ED248497C7483B26CAAF7E1 |
SHA-256 | 7506BDA6B5793A0EC19AEA95C17E042C7EAF005FE76A32C8A115BE5711064CDB |