CONTAINERGPU requiredcomputer-science
Reads scientific PDFs and pulls out every software name, tool and library the authors used, with its location in the text, a type and a purpose. This leaf runs f14, the strongest of the three models o...
- Volunteers
- 0
- Free memory
- 6,000 MB
- GPU
- 4,096 MB VRAM
- CPU cores
- 1 core
CONTAINERcomputer-science
Reads scientific PDFs and pulls out every software name, tool and library the authors used, with its location in the text, a type and a purpose. This leaf runs f14, the strongest of the three models o...
- Volunteers
- 0
- Free memory
- 6,000 MB
- GPU
- Not needed
- CPU cores
- 1 core
CONTAINERGPU requiredcomputer-science
Reads scientific PDFs and pulls out every software name, tool and library the authors used, with its location in the text, a type and a purpose. This leaf runs f13, trained with heavy weighting toward...
- Volunteers
- 0
- Free memory
- 6,000 MB
- GPU
- 4,096 MB VRAM
- CPU cores
- 1 core
CONTAINERcomputer-science
Reads scientific PDFs and pulls out every software name, tool and library the authors used, with its location in the text, a type and a purpose. This leaf runs f13, trained with heavy weighting toward...
- Volunteers
- 0
- Free memory
- 6,000 MB
- GPU
- Not needed
- CPU cores
- 1 core
CONTAINERGPU requiredcomputer-science
Reads scientific PDFs and pulls out every software name, tool and library the authors used, with its location in the text, a type and a purpose. This leaf runs V1, the crowd's first-generation model. ...
- Volunteers
- 0
- Free memory
- 6,000 MB
- GPU
- 4,096 MB VRAM
- CPU cores
- 1 core
CONTAINERcomputer-science
Reads scientific PDFs and pulls out every software name, tool and library the authors used, with its location in the text, a type and a purpose. This leaf runs V1, the crowd's first-generation model. ...
- Volunteers
- 0
- Free memory
- 6,000 MB
- GPU
- Not needed
- CPU cores
- 1 core