{
"$type": "site.standard.document",
"bskyPostRef": {
"cid": "bafyreiaqjgvafo6zn6rhymqycjzk3u4qer56swwilafakqm2yzsmezsupe",
"uri": "at://did:plc:5v5xdyhb3zf74bcdmcnazkrk/app.bsky.feed.post/3ml5c2nezfbr2"
},
"coverImage": {
"$type": "blob",
"ref": {
"$link": "bafkreib7up66cy3vs2nkoug4yiq5tfglc7ihoq7k2yuzn5kns26olyqzte"
},
"mimeType": "image/jpeg",
"size": 419863
},
"path": "/science/shortcut-to-mars/",
"publishedAt": "2026-05-05T20:28:29.000Z",
"site": "https://www.zmescience.com",
"tags": [
"Astronomy",
"Astrophysics",
"Science",
"Space",
"Acta Astronautica",
"asteroid 2001 CA21",
"deep space",
"human spaceflight",
"interplanetary travel",
"Mars",
"mars mission",
"Mars opposition",
"nasa",
"near-Earth asteroids",
"orbital mechanics",
"space exploration"
],
"textContent": "One possible option could see humans reach Mars in just 33 days.",
"title": "A Possible Shortcut To Mars Could Cut The Round Trip By More Than Half"
}