[ { "@graph" : [ { "@id" : "https://w3id.org/np/RA7mwhSxGe_gaeLlCrie2TJ-fHwnAhx-74KtSzqMBPoOA", "@type" : [ "http://www.nanopub.org/nschema#Nanopublication" ], "http://www.nanopub.org/nschema#hasAssertion" : [ { "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/assertion" } ], "http://www.nanopub.org/nschema#hasProvenance" : [ { "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/provenance" } ], "http://www.nanopub.org/nschema#hasPublicationInfo" : [ { "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/pubinfo" } ] } ], "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/Head" }, { "@graph" : [ { "@id" : "https://w3id.org/np/RA7mwhSxGe_gaeLlCrie2TJ-fHwnAhx-74KtSzqMBPoOA/dataset", "@type" : [ "http://purl.org/dc/dcmitype/Dataset" ], "http://purl.org/dc/terms/description" : [ { "@value" : "1500 synthetic networks generated for benchmarking QOMIC algorithm. Networks vary in size (200-1000 nodes), density (average degree 2-10), and activation ratio (0.2, 0.5, 0.8) across four motif topologies: cascade, FFL, bifan, and biparallel." } ], "http://purl.org/dc/terms/relation" : [ { "@id" : "https://doi.org/10.1093/bioadv/vbae208" } ], "http://www.w3.org/2000/01/rdf-schema#label" : [ { "@value" : "QOMIC Synthetic Benchmark Networks" } ] } ], "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/assertion" }, { "@graph" : [ { "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/assertion", "http://www.w3.org/ns/prov#wasAttributedTo" : [ { "@id" : "https://orcid.org/0000-0002-1784-2920" } ] } ], "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/provenance" }, { "@graph" : [ { "@id" : "https://orcid.org/0000-0002-1784-2920", "http://xmlns.com/foaf/0.1/name" : [ { "@value" : "Anne Fouilloux" } ] }, { "@id" : "https://w3id.org/np/RA7mwhSxGe_gaeLlCrie2TJ-fHwnAhx-74KtSzqMBPoOA", "http://purl.org/dc/terms/created" : [ { "@type" : "http://www.w3.org/2001/XMLSchema#dateTime", "@value" : "2026-01-06T18:08:55.604Z" } ], "http://purl.org/dc/terms/creator" : [ { "@id" : "https://orcid.org/0000-0002-1784-2920" } ], "http://purl.org/dc/terms/isPartOf" : [ { "@id" : "https://w3id.org/np/RAvk9pmoZ2IberoDe7zUWV0bVithiy6CnbSG5y06YuKM0/quantum-computing-applications-for-biodiversity-re" } ], "http://purl.org/dc/terms/license" : [ { "@id" : "https://creativecommons.org/licenses/by/4.0/" } ], "http://purl.org/nanopub/x/hasNanopubType" : [ { "@id" : "http://purl.org/dc/dcmitype/Dataset" } ], "http://purl.org/nanopub/x/introduces" : [ { "@id" : "https://w3id.org/np/RA7mwhSxGe_gaeLlCrie2TJ-fHwnAhx-74KtSzqMBPoOA/dataset" } ], "http://purl.org/nanopub/x/wasCreatedAt" : [ { "@id" : "https://nanodash.knowledgepixels.com/" } ], "http://www.w3.org/2000/01/rdf-schema#label" : [ { "@value" : "Dataset: QOMIC Synthetic Benchmark Networks" } ], "https://w3id.org/np/o/ntemplate/wasCreatedFromProvenanceTemplate" : [ { "@id" : "https://w3id.org/np/RA7lSq6MuK_TIC6JMSHvLtee3lpLoZDOqLJCLXevnrPoU" } ], "https://w3id.org/np/o/ntemplate/wasCreatedFromPubinfoTemplate" : [ { "@id" : "https://w3id.org/np/RA0J4vUn_dekg-U1kK3AOEt02p9mT2WO03uGxLDec1jLw" }, { "@id" : "https://w3id.org/np/RAukAcWHRDlkqxk7H2XNSegc1WnHI569INvNr-xdptDGI" } ], "https://w3id.org/np/o/ntemplate/wasCreatedFromTemplate" : [ { "@id" : "https://w3id.org/np/RAuVB37yyAuAlgusrUAoG84JI4_EfrEqIkpEZYDpSz3d8" } ] }, { "@id" : "https://w3id.org/np/RA7mwhSxGe_gaeLlCrie2TJ-fHwnAhx-74KtSzqMBPoOA/sig", "http://purl.org/nanopub/x/hasAlgorithm" : [ { "@value" : "RSA" } ], "http://purl.org/nanopub/x/hasPublicKey" : [ { "@value" : "MIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEAosxbitQQzLXi1949Zd9JmSkGfYHHlj/CZZ7iiYs1TrZ5/Jk/wGA7kHEv7f9NtsinOdBo9EtHj/jgHE5W2Vv404JbOAY280PvH5Jns5ObWdVZmtHeCw0ZIdPEqNrurrEweKhzcTJW/YRpYWPwVPo47XyIW6IAcmx6gfdtmdPddMpplqExrP6G99ksXfXlZI0InQtZJRSGK5lYLLNzaofFtupPI5OAAGjooDyHijp0Ap2HIXH6WpO4S44cFPKU34pH2xhIY4/XT5DG1X5UoiVHs2Yoo30BHFudj/kAFwdzcy6Yh4tMDaB3ox6p7pi267d7n0y7kypC0Nt+hfgHQ1FpgwIDAQAB" } ], "http://purl.org/nanopub/x/hasSignature" : [ { "@value" : "AHQrsdK7hDp7jYr6dF4prXk/+hwzFUIKszpJVict2ai/XPYAzvGs+KlJEa40m6U75KkQyeHybrLopuL1p8bTHz5SBkbj7pfcC/kQ+LUpktQTGFd8T7Xu5PJoHvs4kUlzIBzw0HIh4nIkWaDiGK38jKxg+cU1ZTAXmFXYlLiyoHGNrFTV+vj8Gdvf+iCB1l8FeqRuNGNQPFVOxhQ6sUh56d4VDeCSoRklBBd/DSIRdJzHdhZYu8WitFisGKG++Tgp0rlkqQWpoBqdXVlFwq3x7KAXYkysH4UM/pCyAlo/K0NbtnPmisGaqnIyFl6qj4I95elnXcu2WCtbmdVdoQsg8A==" } ], "http://purl.org/nanopub/x/hasSignatureTarget" : [ { "@id" : "https://w3id.org/np/RA7mwhSxGe_gaeLlCrie2TJ-fHwnAhx-74KtSzqMBPoOA" } ], "http://purl.org/nanopub/x/signedBy" : [ { "@id" : "https://orcid.org/0000-0002-1784-2920" } ] }, { "@id" : "https://w3id.org/np/RAvk9pmoZ2IberoDe7zUWV0bVithiy6CnbSG5y06YuKM0/quantum-computing-applications-for-biodiversity-re", "https://w3id.org/np/o/ntemplate/hasLabelFromApi" : [ { "@value" : "Quantum Computing Applications for Biodiversity Research - Systematic Review" } ] } ], "@id" : "https://w3id.org/np/RA1374fac523135758dab5f1d63b96d879666a4a07659/pubinfo" } ]