U.S. flag

An official website of the United States government

Dot gov

Official websites use .gov
A .gov website belongs to an official government organization in the United States.

Https

Secure .gov websites use HTTPS
A lock () or https:// means you’ve safely connected to the .gov website. Share sensitive information only on official, secure websites.

Breadcrumb

  1. Home

Software and data associated with ``DeJaco, R. F.; Roberts, M. J.; Romsos, E. L.; Vallone, P. M.; Kearsley, A. J. Reducing Bias and Quantifying Uncertainty in Fluorescence Produced by PCR*Under Review*, 2023.''

The purpose of this code and data is to enable reproductionand facilitate extension of the computationalresults associated with following workDeJaco, R. F.; Roberts, M. J.; Romsos, E. L.; Vallone, P. M.; Kearsley, A. J. Reducing Bias and Quantifying Uncertainty in Fluorescence Produced by PCR*Under Review*, 2023.

About this Dataset

Updated: 2024-02-22
Metadata Last Updated: 2023-01-12 00:00:00
Date Created: N/A
Views:
Data Provided by:
Polymerase Chain Reaction
Dataset Owner: N/A

Access this data

Contact dataset owner Landing Page URL
Download URL
Table representation of structured data
Title Software and data associated with ``DeJaco, R. F.; Roberts, M. J.; Romsos, E. L.; Vallone, P. M.; Kearsley, A. J. Reducing Bias and Quantifying Uncertainty in Fluorescence Produced by PCR*Under Review*, 2023.''
Description The purpose of this code and data is to enable reproductionand facilitate extension of the computationalresults associated with following workDeJaco, R. F.; Roberts, M. J.; Romsos, E. L.; Vallone, P. M.; Kearsley, A. J. Reducing Bias and Quantifying Uncertainty in Fluorescence Produced by PCR*Under Review*, 2023.
Modified 2023-01-12 00:00:00
Publisher Name National Institute of Standards and Technology
Contact mailto:[email protected]
Keywords Polymerase Chain Reaction , Uncertainty Quantification , Stochastic Branching Process
{
    "identifier": "ark:\/88434\/mds2-2910",
    "accessLevel": "public",
    "contactPoint": {
        "hasEmail": "mailto:[email protected]",
        "fn": "Robert De Jaco"
    },
    "programCode": [
        "006:045"
    ],
    "@type": "dcat:Dataset",
    "landingPage": "https:\/\/data.nist.gov\/od\/id\/mds2-2910",
    "description": "The purpose of this code and data is to enable reproductionand facilitate extension of the computationalresults associated with following workDeJaco, R. F.; Roberts, M. J.; Romsos, E. L.; Vallone, P. M.; Kearsley, A. J. Reducing Bias and Quantifying Uncertainty in Fluorescence Produced by PCR*Under Review*, 2023.",
    "language": [
        "en"
    ],
    "title": "Software and data associated with ``DeJaco, R. F.; Roberts, M. J.; Romsos, E. L.; Vallone, P. M.; Kearsley, A. J. Reducing Bias and Quantifying Uncertainty in Fluorescence Produced by PCR*Under Review*, 2023.''",
    "distribution": [
        {
            "downloadURL": "https:\/\/data.nist.gov\/od\/ds\/mds2-2910\/code-v0.0.1.zip",
            "mediaType": "application\/x-zip-compressed",
            "title": "Zipped version of all files"
        },
        {
            "downloadURL": "https:\/\/data.nist.gov\/od\/ds\/mds2-2910\/bias-uq-pcr-v0.9.1.zip",
            "mediaType": "application\/octet-stream",
            "title": "Updated version of dataset"
        }
    ],
    "license": "https:\/\/www.nist.gov\/open\/license",
    "bureauCode": [
        "006:55"
    ],
    "modified": "2023-01-12 00:00:00",
    "publisher": {
        "@type": "org:Organization",
        "name": "National Institute of Standards and Technology"
    },
    "theme": [
        "Nanotechnology:Nanobiotechnology",
        "Physics:Biological physics",
        "Mathematics and Statistics:Uncertainty quantification",
        "Mathematics and Statistics:Modeling and simulation research",
        "Information Technology:Data and informatics",
        "Information Technology:Computational science",
        "Information Technology:Biometrics",
        "Health:Clinical diagnostics",
        "Chemistry:Theoretical chemistry and modeling",
        "Chemistry:Chemical engineering and processing",
        "Bioscience:Genomic measurements"
    ],
    "issued": "2023-02-06",
    "keyword": [
        "Polymerase Chain Reaction",
        "Uncertainty Quantification",
        "Stochastic Branching Process"
    ]
}

Was this page helpful?