A small tool to view real-world ActivityPub objects as JSON! Enter a URL
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Accept
header
to the server to view the underlying object.
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"content": "<p>Recently, I submitted the first big paper on our <a href=\"https://social.tchncs.de/tags/Python\" class=\"mention hashtag\" rel=\"tag\">#<span>Python</span></a> :python: based approach for <a href=\"https://social.tchncs.de/tags/FormalKnowledgeRepresentation\" class=\"mention hashtag\" rel=\"tag\">#<span>FormalKnowledgeRepresentation</span></a>. </p><p>If accepted, it will be <a href=\"https://social.tchncs.de/tags/OpenAccess\" class=\"mention hashtag\" rel=\"tag\">#<span>OpenAccess</span></a> </p><p>The preprint is OA anyway:</p><p><a href=\"https://www.preprints.org/manuscript/202401.0060/v1\" target=\"_blank\" rel=\"nofollow noopener noreferrer\" translate=\"no\"><span class=\"invisible\">https://www.</span><span class=\"ellipsis\">preprints.org/manuscript/20240</span><span class=\"invisible\">1.0060/v1</span></a></p><p>The approach allows to model the content of mathematical theorems (such as Pythagoras) as nodes and edges in a <a href=\"https://social.tchncs.de/tags/knowledgegraph\" class=\"mention hashtag\" rel=\"tag\">#<span>knowledgegraph</span></a> </p><p>This is done via *qualifiers* – a concept borrowed from <a href=\"https://social.tchncs.de/tags/Wikidata\" class=\"mention hashtag\" rel=\"tag\">#<span>Wikidata</span></a> </p><p><a href=\"https://social.tchncs.de/tags/PyIRK\" class=\"mention hashtag\" rel=\"tag\">#<span>PyIRK</span></a></p>",
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"en": "<p>Recently, I submitted the first big paper on our <a href=\"https://social.tchncs.de/tags/Python\" class=\"mention hashtag\" rel=\"tag\">#<span>Python</span></a> :python: based approach for <a href=\"https://social.tchncs.de/tags/FormalKnowledgeRepresentation\" class=\"mention hashtag\" rel=\"tag\">#<span>FormalKnowledgeRepresentation</span></a>. </p><p>If accepted, it will be <a href=\"https://social.tchncs.de/tags/OpenAccess\" class=\"mention hashtag\" rel=\"tag\">#<span>OpenAccess</span></a> </p><p>The preprint is OA anyway:</p><p><a href=\"https://www.preprints.org/manuscript/202401.0060/v1\" target=\"_blank\" rel=\"nofollow noopener noreferrer\" translate=\"no\"><span class=\"invisible\">https://www.</span><span class=\"ellipsis\">preprints.org/manuscript/20240</span><span class=\"invisible\">1.0060/v1</span></a></p><p>The approach allows to model the content of mathematical theorems (such as Pythagoras) as nodes and edges in a <a href=\"https://social.tchncs.de/tags/knowledgegraph\" class=\"mention hashtag\" rel=\"tag\">#<span>knowledgegraph</span></a> </p><p>This is done via *qualifiers* – a concept borrowed from <a href=\"https://social.tchncs.de/tags/Wikidata\" class=\"mention hashtag\" rel=\"tag\">#<span>Wikidata</span></a> </p><p><a href=\"https://social.tchncs.de/tags/PyIRK\" class=\"mention hashtag\" rel=\"tag\">#<span>PyIRK</span></a></p>"
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