{"type":"standard","title":"Karen Wynn","displaytitle":"Karen Wynn","namespace":{"id":0,"text":""},"wikibase_item":"Q3812977","titles":{"canonical":"Karen_Wynn","normalized":"Karen Wynn","display":"Karen Wynn"},"pageid":34888588,"thumbnail":{"source":"https://upload.wikimedia.org/wikipedia/commons/thumb/5/5a/KarenWynn.jpg/330px-KarenWynn.jpg","width":320,"height":373},"originalimage":{"source":"https://upload.wikimedia.org/wikipedia/commons/5/5a/KarenWynn.jpg","width":405,"height":472},"lang":"en","dir":"ltr","revision":"1282405070","tid":"86236e6d-0a07-11f0-bb04-3f8fa66b0150","timestamp":"2025-03-26T05:59:48Z","description":"Canadian psychologist","description_source":"local","content_urls":{"desktop":{"page":"https://en.wikipedia.org/wiki/Karen_Wynn","revisions":"https://en.wikipedia.org/wiki/Karen_Wynn?action=history","edit":"https://en.wikipedia.org/wiki/Karen_Wynn?action=edit","talk":"https://en.wikipedia.org/wiki/Talk:Karen_Wynn"},"mobile":{"page":"https://en.m.wikipedia.org/wiki/Karen_Wynn","revisions":"https://en.m.wikipedia.org/wiki/Special:History/Karen_Wynn","edit":"https://en.m.wikipedia.org/wiki/Karen_Wynn?action=edit","talk":"https://en.m.wikipedia.org/wiki/Talk:Karen_Wynn"}},"extract":"Karen Wynn is an artist and a Canadian and American Yale University Professor Emerita of psychology and cognitive science. She was born in Austin, Texas, and grew up on the Canadian prairies in Regina, Saskatchewan. Her research explores the cognitive capacities of infants and young children. She directed for over 3 decades the Infant Cognition Laboratory, first in the Psychology Department at the University of Arizona, and then in the Psychology Department at Yale University.","extract_html":"
Karen Wynn is an artist and a Canadian and American Yale University Professor Emerita of psychology and cognitive science. She was born in Austin, Texas, and grew up on the Canadian prairies in Regina, Saskatchewan. Her research explores the cognitive capacities of infants and young children. She directed for over 3 decades the Infant Cognition Laboratory, first in the Psychology Department at the University of Arizona, and then in the Psychology Department at Yale University.
"}{"fact":"The chlorine in fresh tap water irritates sensitive parts of the cat's nose. Let tap water sit for 24 hours before giving it to a cat.","length":134}
{"slip": { "id": 11, "advice": "Avoid mixing Ginger Nuts with other biscuits, they contaminate. Keep separated."}}
{"fact":"In 1987 cats overtook dogs as the number one pet in America.","length":60}
{"slip": { "id": 168, "advice": "Do a bit more for your friends."}}
{"type":"standard","title":"Rare, Precious and Gone","displaytitle":"Rare, Precious and Gone","namespace":{"id":0,"text":""},"wikibase_item":"Q96401261","titles":{"canonical":"Rare,_Precious_and_Gone","normalized":"Rare, Precious and Gone","display":"Rare, Precious and Gone"},"pageid":63874040,"thumbnail":{"source":"https://upload.wikimedia.org/wikipedia/en/9/97/Mike_Scott_Rare_Precious_and_Gone_1998_single_cover.jpg","width":305,"height":305},"originalimage":{"source":"https://upload.wikimedia.org/wikipedia/en/9/97/Mike_Scott_Rare_Precious_and_Gone_1998_single_cover.jpg","width":305,"height":305},"lang":"en","dir":"ltr","revision":"1169196281","tid":"fd6087d4-3546-11ee-a9d2-58f79ff867b1","timestamp":"2023-08-07T17:22:31Z","description":"1998 single by Mike Scott","description_source":"local","content_urls":{"desktop":{"page":"https://en.wikipedia.org/wiki/Rare%2C_Precious_and_Gone","revisions":"https://en.wikipedia.org/wiki/Rare%2C_Precious_and_Gone?action=history","edit":"https://en.wikipedia.org/wiki/Rare%2C_Precious_and_Gone?action=edit","talk":"https://en.wikipedia.org/wiki/Talk:Rare%2C_Precious_and_Gone"},"mobile":{"page":"https://en.m.wikipedia.org/wiki/Rare%2C_Precious_and_Gone","revisions":"https://en.m.wikipedia.org/wiki/Special:History/Rare%2C_Precious_and_Gone","edit":"https://en.m.wikipedia.org/wiki/Rare%2C_Precious_and_Gone?action=edit","talk":"https://en.m.wikipedia.org/wiki/Talk:Rare%2C_Precious_and_Gone"}},"extract":"\"Rare, Precious and Gone\" is a song by Scottish singer-songwriter Mike Scott, released as the second single from his second solo album Still Burning. It was written by Mike Scott, and produced by Scott and Niko Bolas. \"Rare, Precious and Gone\" reached No. 74 on the UK Singles Chart in February 1998.","extract_html":"
\"Rare, Precious and Gone\" is a song by Scottish singer-songwriter Mike Scott, released as the second single from his second solo album Still Burning. It was written by Mike Scott, and produced by Scott and Niko Bolas. \"Rare, Precious and Gone\" reached No. 74 on the UK Singles Chart in February 1998.
"}{"type":"standard","title":"Bradley Alpert","displaytitle":"Bradley Alpert","namespace":{"id":0,"text":""},"wikibase_item":"Q4954866","titles":{"canonical":"Bradley_Alpert","normalized":"Bradley Alpert","display":"Bradley Alpert"},"pageid":19734417,"thumbnail":{"source":"https://upload.wikimedia.org/wikipedia/commons/thumb/9/97/Bradley_Alpert_1991_%28headshot%29.jpg/330px-Bradley_Alpert_1991_%28headshot%29.jpg","width":320,"height":400},"originalimage":{"source":"https://upload.wikimedia.org/wikipedia/commons/9/97/Bradley_Alpert_1991_%28headshot%29.jpg","width":2707,"height":3382},"lang":"en","dir":"ltr","revision":"1215767256","tid":"57de351b-ebcf-11ee-acf5-8cc0fcfad782","timestamp":"2024-03-27T00:17:06Z","description":"American scientist","description_source":"local","content_urls":{"desktop":{"page":"https://en.wikipedia.org/wiki/Bradley_Alpert","revisions":"https://en.wikipedia.org/wiki/Bradley_Alpert?action=history","edit":"https://en.wikipedia.org/wiki/Bradley_Alpert?action=edit","talk":"https://en.wikipedia.org/wiki/Talk:Bradley_Alpert"},"mobile":{"page":"https://en.m.wikipedia.org/wiki/Bradley_Alpert","revisions":"https://en.m.wikipedia.org/wiki/Special:History/Bradley_Alpert","edit":"https://en.m.wikipedia.org/wiki/Bradley_Alpert?action=edit","talk":"https://en.m.wikipedia.org/wiki/Talk:Bradley_Alpert"}},"extract":"Bradley K. Alpert is a computational scientist at NIST. He is probably best known for co-developing fast spherical filters. His fast spherical filters were critical in the construction of the most efficient three-dimensional fast multipole methods (FMMs) for solving the Helmholtz equation and