{
  "@type": "dcat:Dataset",
  "accessLevel": "public",
  "accrualPeriodicity": "irregular",
  "bureauCode": [
    "006:55"
  ],
  "contactPoint": {
    "fn": "Jason Killgore",
    "hasEmail": "mailto:jason.killgore@nist.gov"
  },
  "description": "This data set contains results from photorheology measurements (e.g. G', G'', torque) as a function of time for specified gaps and irradiances. UV exposure is turned on at 30 s and remains on for 60 s. Also included is a Jupyter notebook to analyze the data to create mechanical master curves and print predictions.",
  "distribution": [
    {
      "description": "Description of the data contained in this repository",
      "downloadURL": "https://data.nist.gov/od/ds/mds2-4203/PR_MIDAS_Readme_GDPR_v2.txt",
      "mediaType": "text/plain",
      "title": "Read me file for GDPR Data and Analysis"
    },
    {
      "description": "Gap dependent photorheology of 3 hydrogel formulations with accompanying Jupyter notebook",
      "downloadURL": "https://data.nist.gov/od/ds/mds2-4203/Killgore_GDPR_data_and_notebook.zip",
      "mediaType": "application/x-zip-compressed",
      "title": "Photorheology Data and Analysis"
    }
  ],
  "identifier": "ark:/88434/mds2-4203",
  "issued": "2026-07-16",
  "keyword": [
    "Hydrogel",
    "Photopolymer",
    "Photorheology",
    "Rheology",
    "Vat Photopolymerization"
  ],
  "landingPage": "https://data.nist.gov/od/id/mds2-4203",
  "language": [
    "en"
  ],
  "license": "https://www.nist.gov/open/license",
  "modified": "2026-05-21 00:00:00",
  "programCode": [
    "006:045"
  ],
  "publisher": {
    "@type": "org:Organization",
    "name": "National Institute of Standards and Technology"
  },
  "theme": [
    "Manufacturing:Additive manufacturing",
    "Materials:Materials characterization",
    "Materials:Modeling and computational material science",
    "Materials:Polymers",
    "Metrology:Flow metrology and rheology"
  ],
  "title": "Gap Dependent Photorheology Data and Analysis Code to accompany \"Mechanical Master Curves of Optically-thick Photopolymer Gels by Gap-dependent Photorheology\""
}