{"slip": { "id": 104, "advice": "Do, or do not. There is no try."}}
{"fact":"Ailurophile is the word cat lovers are officially called.","length":57}
{"fact":"Perhaps the most famous comic cat is the Cheshire Cat in Lewis Carroll\u2019s Alice in Wonderland. With the ability to disappear, this mysterious character embodies the magic and sorcery historically associated with cats.","length":216}
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{"fact":"Smuggling a cat out of ancient Egypt was punishable by death. Phoenician traders eventually succeeded in smuggling felines, which they sold to rich people in Athens and other important cities.","length":192}
{"fact":"It is estimated that cats can make over 60 different sounds.","length":60}
{"type":"standard","title":"Karl Marlo","displaytitle":"Karl Marlo","namespace":{"id":0,"text":""},"wikibase_item":"Q90667","titles":{"canonical":"Karl_Marlo","normalized":"Karl Marlo","display":"Karl Marlo"},"pageid":15758342,"thumbnail":{"source":"https://upload.wikimedia.org/wikipedia/commons/thumb/c/c4/Karl_Georg_Winkelblech.jpg/330px-Karl_Georg_Winkelblech.jpg","width":320,"height":477},"originalimage":{"source":"https://upload.wikimedia.org/wikipedia/commons/c/c4/Karl_Georg_Winkelblech.jpg","width":388,"height":578},"lang":"en","dir":"ltr","revision":"1284755690","tid":"c596b7eb-1551-11f0-903a-b0e32e050ea3","timestamp":"2025-04-09T14:49:00Z","description":"German economist (1810–1865)","description_source":"local","content_urls":{"desktop":{"page":"https://en.wikipedia.org/wiki/Karl_Marlo","revisions":"https://en.wikipedia.org/wiki/Karl_Marlo?action=history","edit":"https://en.wikipedia.org/wiki/Karl_Marlo?action=edit","talk":"https://en.wikipedia.org/wiki/Talk:Karl_Marlo"},"mobile":{"page":"https://en.m.wikipedia.org/wiki/Karl_Marlo","revisions":"https://en.m.wikipedia.org/wiki/Special:History/Karl_Marlo","edit":"https://en.m.wikipedia.org/wiki/Karl_Marlo?action=edit","talk":"https://en.m.wikipedia.org/wiki/Talk:Karl_Marlo"}},"extract":"Karl Marlo, pseudonym of Karl Georg Winkelblech, was a German professor, scientist, chemist, and state socialist.","extract_html":"
Karl Marlo, pseudonym of Karl Georg Winkelblech, was a German professor, scientist, chemist, and state socialist.
"}{"type":"standard","title":"Vapor–liquid–solid method","displaytitle":"Vapor–liquid–solid method","namespace":{"id":0,"text":""},"wikibase_item":"Q899110","titles":{"canonical":"Vapor–liquid–solid_method","normalized":"Vapor–liquid–solid method","display":"Vapor–liquid–solid method"},"pageid":19905510,"thumbnail":{"source":"https://upload.wikimedia.org/wikipedia/commons/thumb/6/65/Au-Si_Droplet_Catalyzing_Whisker_Growth.png/320px-Au-Si_Droplet_Catalyzing_Whisker_Growth.png","width":320,"height":345},"originalimage":{"source":"https://upload.wikimedia.org/wikipedia/commons/6/65/Au-Si_Droplet_Catalyzing_Whisker_Growth.png","width":604,"height":652},"lang":"en","dir":"ltr","revision":"1252658591","tid":"4c6cdec4-9067-11ef-aa2d-e86395a8754a","timestamp":"2024-10-22T11:18:01Z","description":"Mechanism to grow nano wires","description_source":"local","content_urls":{"desktop":{"page":"https://en.wikipedia.org/wiki/Vapor%E2%80%93liquid%E2%80%93solid_method","revisions":"https://en.wikipedia.org/wiki/Vapor%E2%80%93liquid%E2%80%93solid_method?action=history","edit":"https://en.wikipedia.org/wiki/Vapor%E2%80%93liquid%E2%80%93solid_method?action=edit","talk":"https://en.wikipedia.org/wiki/Talk:Vapor%E2%80%93liquid%E2%80%93solid_method"},"mobile":{"page":"https://en.m.wikipedia.org/wiki/Vapor%E2%80%93liquid%E2%80%93solid_method","revisions":"https://en.m.wikipedia.org/wiki/Special:History/Vapor%E2%80%93liquid%E2%80%93solid_method","edit":"https://en.m.wikipedia.org/wiki/Vapor%E2%80%93liquid%E2%80%93solid_method?action=edit","talk":"https://en.m.wikipedia.org/wiki/Talk:Vapor%E2%80%93liquid%E2%80%93solid_method"}},"extract":"The vapor–liquid–solid method (VLS) is a mechanism for the growth of one-dimensional structures, such as nanowires, from chemical vapor deposition. The growth of a crystal through direct adsorption of a gas phase on to a solid surface is generally very slow. The VLS mechanism circumvents this by introducing a catalytic liquid alloy phase which can rapidly adsorb a vapor to supersaturation levels, and from which crystal growth can subsequently occur from nucleated seeds at the liquid–solid interface. The physical characteristics of nanowires grown in this manner depend, in a controllable way, upon the size and physical properties of the liquid alloy.","extract_html":"
The vapor–liquid–solid method (VLS) is a mechanism for the growth of one-dimensional structures, such as nanowires, from chemical vapor deposition. The growth of a crystal through