@prefix dcat: <http://www.w3.org/ns/dcat#> .
@prefix dct: <http://purl.org/dc/terms/> .
@prefix foaf: <http://xmlns.com/foaf/0.1/> .
@prefix vcard: <http://www.w3.org/2006/vcard/ns#> .
@prefix xsd: <http://www.w3.org/2001/XMLSchema#> .

<https://rec.harvest-normandie.data4citizen.com/dataset/oai-hal-hal-00850959v3> a dcat:Dataset ;
    dct:description """
              We propose a model of chemostat where the bacterial population is individually-based, each bacterium is explicitly represented and has a mass evolving continuously over time. The substrate concentration is represented as a conventional ordinary differential equation. These two components are coupled with the bacterial consumption. Mechanisms acting on the bacteria are explicitly described (growth, division and up-take). Bacteria interact via consumption. We set the exact Monte Carlo simulation algorithm of this model and its mathematical representation as a stochastic process. We prove the convergence of this process to the solution of an integro-differential equation when the population size tends to infinity. Finally, we propose several numerical simulations.
            """ ;
    dct:identifier "hal-00850959" ;
    dct:issued "2026-05-09T02:54:38.155519"^^xsd:dateTime ;
    dct:language "en" ;
    dct:modified "2026-05-09T02:54:38.155523"^^xsd:dateTime ;
    dct:publisher <https://rec.harvest-normandie.data4citizen.com/organization/cce9db95-46d9-4dc2-84b6-764215d0a002> ;
    dct:title "A mass-structured individual-based model of the chemostat: convergence and simulation" ;
    dcat:contactPoint [ a vcard:Organization ;
            vcard:fn "CCSD" ] ;
    dcat:distribution <https://rec.harvest-normandie.data4citizen.com/dataset/oai-hal-hal-00850959v3/resource/36da1e33-38dd-4168-b625-e96204f33718> ;
    dcat:keyword "ecological-population-model",
        "individually-based-model-ibm",
        "infoeu-reposemanticsreport",
        "infoinfo-btcomputer-science-csbiotechnology",
        "integro-differential-equation",
        "large-population-asymptotics",
        "mass-structured-chemostat-model",
        "mathematics-subject-classification-msc2010-60j80-60j85-primary-37n25-92d25-secondary",
        "mathmath-prmathematics-mathprobability-mathpr",
        "monte-carlo",
        "reports",
        "sdvbiolife-sciences-q-biobiotechnology" ;
    dcat:landingPage <https://inria.hal.science/hal-00850959> .

<https://rec.harvest-normandie.data4citizen.com/dataset/oai-hal-hal-00850959v3/resource/36da1e33-38dd-4168-b625-e96204f33718> a dcat:Distribution ;
    dct:format "HTML" ;
    dct:issued "2026-05-09T02:54:38.168606"^^xsd:dateTime ;
    dct:modified "2026-05-09T02:54:38.140023"^^xsd:dateTime ;
    dct:title "A mass-structured individual-based model of the chemostat: convergence and simulation" ;
    dcat:accessURL <https://inria.hal.science/hal-00850959> .

<https://rec.harvest-normandie.data4citizen.com/organization/cce9db95-46d9-4dc2-84b6-764215d0a002> a foaf:Agent ;
    foaf:name "test_moissonnage_selune" .

<https://inria.hal.science/hal-00850959> a foaf:Document .

