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Sascha Foerster :bonndigital:
Sascha Foerster :bonndigital:
@Sascha@bonn.social  ·  activity timestamp 2 days ago

#Linktipp Fun Facts feiert Weltpremiere in Berlin https://correctiv.org/in-eigener-sache/2026/02/24/fun-facts-feiert-weltpremiere-in-berlin/ #FunFacts

Folgt ihnen!
Peertube: @funfacts.de Mastodon: @funfacts_de

correctiv.org

Fun Facts feiert Weltpremiere in Berlin

Fun Facts feiert Weltpremiere in Berlin: Neues unabhängiges News-Format verbindet Humor mit konstruktivem Journalismus.
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Reclus
Reclus
@reclus@chaos.social  ·  activity timestamp 3 days ago

Einen #Wikidata-Eintrag für #FunFacts gibt’s dann auch. Gibt es auch schon einen Mastodon-Account (auf der bekannten Mastodon-Instanz (die ja auf der Website steht)? @Sascha @marcuwekling https://www.wikidata.org/wiki/Q138456492

Fun Facts

German podcast
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jaz :twt: :wales_flag: boosted
UselessFactsBadlyDrawn
UselessFactsBadlyDrawn
@uselessfactsbadlydrawn@pixelfed.social  ·  activity timestamp 7 days ago

Useless Facts, Badly Drawn #491: The Cox-Zucker Machine.

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#mathematics #geometry #coxzuckermachine #pardonmyfrench #pardonmymath #strangebuttrue #wtf #facts #funfacts #math #webcomics #comics #uselessfacts #uselessfactsbadlydrawn

The Cox-Zucker machine is an algorithm in arithmetic geometry by mathematicians David A. Cox and Steven Zucker. Their paper: "determines whether a given set of sections provides a basis (up to torsion) for the Mordell-Weil group of an elliptic surface E->S, where S is isomorphic to the projective line, " whatever that means. Also, Cox and Zucker said that as soon as they met as students at Princeton, they collaborated specifically because the paper's title would be so funny.
The Cox-Zucker machine is an algorithm in arithmetic geometry by mathematicians David A. Cox and Steven Zucker. Their paper: "determines whether a given set of sections provides a basis (up to torsion) for the Mordell-Weil group of an elliptic surface E->S, where S is isomorphic to the projective line, " whatever that means. Also, Cox and Zucker said that as soon as they met as students at Princeton, they collaborated specifically because the paper's title would be so funny.
The Cox-Zucker machine is an algorithm in arithmetic geometry by mathematicians David A. Cox and Steven Zucker. Their paper: "determines whether a given set of sections provides a basis (up to torsion) for the Mordell-Weil group of an elliptic surface E->S, where S is isomorphic to the projective line, " whatever that means. Also, Cox and Zucker said that as soon as they met as students at Princeton, they collaborated specifically because the paper's title would be so funny.
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UselessFactsBadlyDrawn
UselessFactsBadlyDrawn
@uselessfactsbadlydrawn@pixelfed.social  ·  activity timestamp 7 days ago

Useless Facts, Badly Drawn #491: The Cox-Zucker Machine.

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.

#mathematics #geometry #coxzuckermachine #pardonmyfrench #pardonmymath #strangebuttrue #wtf #facts #funfacts #math #webcomics #comics #uselessfacts #uselessfactsbadlydrawn

The Cox-Zucker machine is an algorithm in arithmetic geometry by mathematicians David A. Cox and Steven Zucker. Their paper: "determines whether a given set of sections provides a basis (up to torsion) for the Mordell-Weil group of an elliptic surface E->S, where S is isomorphic to the projective line, " whatever that means. Also, Cox and Zucker said that as soon as they met as students at Princeton, they collaborated specifically because the paper's title would be so funny.
The Cox-Zucker machine is an algorithm in arithmetic geometry by mathematicians David A. Cox and Steven Zucker. Their paper: "determines whether a given set of sections provides a basis (up to torsion) for the Mordell-Weil group of an elliptic surface E->S, where S is isomorphic to the projective line, " whatever that means. Also, Cox and Zucker said that as soon as they met as students at Princeton, they collaborated specifically because the paper's title would be so funny.
The Cox-Zucker machine is an algorithm in arithmetic geometry by mathematicians David A. Cox and Steven Zucker. Their paper: "determines whether a given set of sections provides a basis (up to torsion) for the Mordell-Weil group of an elliptic surface E->S, where S is isomorphic to the projective line, " whatever that means. Also, Cox and Zucker said that as soon as they met as students at Princeton, they collaborated specifically because the paper's title would be so funny.
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