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{
    "url": "https://numbas.mathcentre.ac.uk/api/questions/11919/?format=api",
    "name": "Solve linear equations in the rationals and Z_n",
    "published": true,
    "project": "https://numbas.mathcentre.ac.uk/api/projects/601/?format=api",
    "author": {
        "url": "https://numbas.mathcentre.ac.uk/api/users/697/?format=api",
        "profile": "https://numbas.mathcentre.ac.uk/accounts/profile/697/?format=api",
        "full_name": "Newcastle University Mathematics and Statistics",
        "pk": 697,
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    },
    "edit": "https://numbas.mathcentre.ac.uk/question/11919/solve-linear-equations-in-the-rationals-and-z-n/?format=api",
    "preview": "https://numbas.mathcentre.ac.uk/question/11919/solve-linear-equations-in-the-rationals-and-z-n/preview/?format=api",
    "download": "https://numbas.mathcentre.ac.uk/question/11919/solve-linear-equations-in-the-rationals-and-z-n.zip?format=api",
    "source": "https://numbas.mathcentre.ac.uk/question/11919/solve-linear-equations-in-the-rationals-and-z-n.exam?format=api",
    "metadata": {
        "notes": "<p><strong>30/07/2013:</strong></p>\n        <p>Created from iassess question, except allowed n=13, 17 or 19 and missed out users having to find inverses of all elements in $\\mathbb{Z}_n$&nbsp;. Instead reminded them how to find inverses in general using the Euclidean Algorithm so reinforcing earlier questions. Advice reminds them of that method.</p>",
        "licence": "Creative Commons Attribution 4.0 International",
        "description": "<p>Solving simple linear equations in $\\mathbb{Q}$ and $\\mathbb{Z}_n$ for $n= 13, \\;17$ or $19$.</p>"
    },
    "status": "broken",
    "resources": []
}