A small tool to view real-world ActivityPub objects as JSON! Enter a URL
or username from Mastodon or a similar service below, and we'll send a
request with
the right
Accept
header
to the server to view the underlying object.
{
"@context": [
"https://www.w3.org/ns/activitystreams",
{
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"atomUri": "ostatus:atomUri",
"inReplyToAtomUri": "ostatus:inReplyToAtomUri",
"conversation": "ostatus:conversation",
"sensitive": "as:sensitive",
"toot": "http://joinmastodon.org/ns#",
"votersCount": "toot:votersCount",
"blurhash": "toot:blurhash",
"focalPoint": {
"@container": "@list",
"@id": "toot:focalPoint"
},
"Hashtag": "as:Hashtag"
}
],
"id": "https://mastodon.social/users/setiinstitute/statuses/113006523390247242",
"type": "Note",
"summary": null,
"inReplyTo": null,
"published": "2024-08-22T16:05:03Z",
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"attributedTo": "https://mastodon.social/users/setiinstitute",
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],
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"content": "<p>PRESS RELEASE: <a href=\"https://www.seti.org/meteor-showers-shed-light-where-comets-formed-early-solar-system\" target=\"_blank\" rel=\"nofollow noopener noreferrer\" translate=\"no\"><span class=\"invisible\">https://www.</span><span class=\"ellipsis\">seti.org/meteor-showers-shed-l</span><span class=\"invisible\">ight-where-comets-formed-early-solar-system</span></a> <br />Meteor Showers Shed Light on Where Comets Formed in the Early Solar System</p><p>An international team of 45 researchers studying meteor showers has found that not all comets crumble the same way when they approach the Sun. In a paper published in the journal Icarus this week, they ascribe the differences to the conditions in the protoplanetary disk where comets formed 4.5 billion years ago.</p><p><a href=\"https://mastodon.social/tags/space\" class=\"mention hashtag\" rel=\"tag\">#<span>space</span></a> <a href=\"https://mastodon.social/tags/science\" class=\"mention hashtag\" rel=\"tag\">#<span>science</span></a> <a href=\"https://mastodon.social/tags/comets\" class=\"mention hashtag\" rel=\"tag\">#<span>comets</span></a> <a href=\"https://mastodon.social/tags/scicomm\" class=\"mention hashtag\" rel=\"tag\">#<span>scicomm</span></a></p>",
"contentMap": {
"en": "<p>PRESS RELEASE: <a href=\"https://www.seti.org/meteor-showers-shed-light-where-comets-formed-early-solar-system\" target=\"_blank\" rel=\"nofollow noopener noreferrer\" translate=\"no\"><span class=\"invisible\">https://www.</span><span class=\"ellipsis\">seti.org/meteor-showers-shed-l</span><span class=\"invisible\">ight-where-comets-formed-early-solar-system</span></a> <br />Meteor Showers Shed Light on Where Comets Formed in the Early Solar System</p><p>An international team of 45 researchers studying meteor showers has found that not all comets crumble the same way when they approach the Sun. In a paper published in the journal Icarus this week, they ascribe the differences to the conditions in the protoplanetary disk where comets formed 4.5 billion years ago.</p><p><a href=\"https://mastodon.social/tags/space\" class=\"mention hashtag\" rel=\"tag\">#<span>space</span></a> <a href=\"https://mastodon.social/tags/science\" class=\"mention hashtag\" rel=\"tag\">#<span>science</span></a> <a href=\"https://mastodon.social/tags/comets\" class=\"mention hashtag\" rel=\"tag\">#<span>comets</span></a> <a href=\"https://mastodon.social/tags/scicomm\" class=\"mention hashtag\" rel=\"tag\">#<span>scicomm</span></a></p>"
},
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"url": "https://files.mastodon.social/media_attachments/files/113/006/523/258/835/645/original/fd891ce99f200bbe.jpeg",
"name": "An artist's illustration of a protoplanetary disk, with the star at the center and bands of bright dust moving outward in what look like concentric rings. The gaps indicate places where planets are likely forming. Set against a background of stars.",
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],
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}
}