{
  "version": "https://jsonfeed.org/version/1.1",
  "title": "chem-bla-ics",
  "description": "Chemblaics (pronounced chem-bla-ics) is the science that uses open science and computers to solve problems in chemistry, biochemistry and related fields.",
  "home_page_url": "https://chem-bla-ics.linkedchemistry.info/",
  "feed_url": "https://chem-bla-ics.linkedchemistry.info/2023/08/08/history-provenance-detail.json",
  "icon": "https://chem-bla-ics.linkedchemistry.info/assets/images/chem-bla-ics_logo.png",
  "language": "en",
  "authors": [
    {
      "name": "Egon Willighagen",
      "url": "https://orcid.org/0000-0001-7542-0286",
      "_orcid": "0000-0001-7542-0286"
    }
  ],
  "items": [

    {
      "id": "https://doi.org/10.59350/kxar2-7z367",
      "url": "https://chem-bla-ics.linkedchemistry.info/2023/08/08/history-provenance-detail.html",
      "title": "History, provenance, detail",
      "content_html": "<p>Just a quick note: I just love the level of detail <a href=\"https://www.wikidata.org/\">Wikidata</a> allows us to use. One of the marvels is the\npractices of <code class=\"language-plaintext highlighter-rouge\">named as</code>, which can be used in statements for subject and objects. The notion and importance here is that things are\nreferred to in different ways, and these properties allows us to link the interpretation with the source. For example,\n<a href=\"https://scholia.toolforge.org/author/Q58978\">Max Born</a>’s seminal work <em><a href=\"https://scholia.toolforge.org/work/Q55867811\">Zur Quantenmechanik</a></em>\n(doi:<a href=\"https://doi.org/10.1007/BF01328531\">10.1007/BF01328531</a>) uses a very short notation to cite other literature, as footnotes,\nand DOIs did not exist yet.</p>\n\n<p><img src=\"/assets/images/old_references.png\" alt=\"Screenshot of two references as footnotes on a page with a mathematical formula from the old Born paper from 1925.\" /></p>\n\n<p>So, in Wikidata, you can <a href=\"https://www.wikidata.org/wiki/Q55867811#P2860\">capture this like this</a>:</p>\n\n<p><img src=\"/assets/images/new_old_references.png\" alt=\"Screenshot of the FAIR references from the 1925 Born paper.\" /></p>\n\n<h4>References</h4>\n<div class=\"csl-bib-body\">\n    <div class=\"csl-entry\">Born, M., &#38; Jordan, P. (1925). Zur Quantenmechanik. <i>Zeitschrift f�r Physik</i>, <i>34</i>(1), 858–888. https://doi.org/10.1007/bf01328531 <a href=\"https://doi.org/10.1007/BF01328531\">CrossRef</a> <a href=\"https://qlever.scholia.wiki/doi/10.1007/BF01328531\">Scholia</a></div>\n  </div>",
      "summary": "Just a quick note: I just love the level of detail Wikidata allows us to use. One of the marvels is the practices of named as, which can be used in statements for subject and objects. The notion and importance here is that things are referred to in different ways, and these properties allows us to link the interpretation with the source. For example, Max Born’s seminal work Zur Quantenmechanik (doi:10.1007/BF01328531) uses a very short notation to cite other literature, as footnotes, and DOIs did not exist yet.",
      "image": "https://chem-bla-ics.linkedchemistry.info/assets/images/old_references.png",
      "date_published": "2023-08-08T00:00:00+00:00",
      "date_modified": "2023-08-08T00:00:00+00:00",
      "tags": ["wikidata","publishing"],
      "_references": [
        
          
          
            { "url": "https://doi.org/10.1007/BF01328531", "doi": "10.1007/BF01328531"
             }
            
          
        ],
      
      
      
      
      
      
        "authors": [ { "name": "Egon Willighagen", "url": "https://orcid.org/0000-0001-7542-0286" } ]
      
    }

  ]
}
