2,321 to 2,330 of 2,454 Results
Oct 7, 2024 -
Replication Data for: Compositio Prompto: An Architecture to Employ Large Language Models in Automated Service Computing
Python Source Code - 22.8 KB -
MD5: 115fabeb0f2fe767cac106532de0fa52
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Oct 7, 2024 -
Replication Data for: Compositio Prompto: An Architecture to Employ Large Language Models in Automated Service Computing
Plain Text - 1.7 KB -
MD5: 6f715e5fe465b98fbde1c47eaf604017
Pseudo code for the prompt template. |
Oct 7, 2024 -
Replication Data for: Compositio Prompto: An Architecture to Employ Large Language Models in Automated Service Computing
Unknown - 674 B -
MD5: 22fa20f5b009a77411d9638dfdbdc973
Project description and dependencies |
Oct 7, 2024 -
Replication Data for: Compositio Prompto: An Architecture to Employ Large Language Models in Automated Service Computing
Markdown Text - 1.0 KB -
MD5: 9121406222628427c9ab3cd2af366119
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Oct 7, 2024 -
Replication Data for: Compositio Prompto: An Architecture to Employ Large Language Models in Automated Service Computing
Python Source Code - 1.6 KB -
MD5: e4b50a7409dd7b0c22d11b4c8489ad89
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Jan 29, 2024 - Quantum Computing @IAAS
Bechtold, Marvin; Barzen, Johanna; Leymann, Frank; Mandl, Alexander, 2024, "Data repository for: Cutting a Wire with Non-Maximally Entangled States", https://doi.org/10.18419/DARUS-3888, DaRUS, V1, UNF:6:79HIPgCvMDi51TZ2V7NUew== [fileUNF]
This dataset contains the replication code for the publication titled "Cutting a Wire with Non-Maximally Entangled States." The provided code represents the version utilized to generate the experimental results documented in the corresponding publication. For comprehensive instructions on using the provided data and code, please refer to the README... |
Tabular Data - 58.2 MB - 14 Variables, 300000 Observations - UNF:6:79HIPgCvMDi51TZ2V7NUew==
Generated data. A detailed description of the columns can be found in the README.md file. |
Adobe PDF - 196.7 KB -
MD5: 01650ac972958f9fe0687708d2fb0990
Figure 6: Plot from the generated data. |
Python Source Code - 5.6 KB -
MD5: fb27515fd970f4ae24ec784a95135668
Functions to execute the experiment. |
Python Source Code - 2.0 KB -
MD5: 1fc9a5bf680067c551ab1383bf284237
Functions for generating non-maximally entangled states. |