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24. The wildest of them all: the baby cage, 1922 https://t.co/zN4T95hkYJ — Lost Temples™ (@LostTemple7) Aug 1, 2025 from http://twitter.com/LostTemple7 via IFTTT

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19. Folding lantern from the early 1900’s. https://t.co/MFlvnbEbPo — Lost Temples™ (@LostTemple7) Aug 1, 2025 from http://twitter.com/LostTemple7 via IFTTT

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15. Soldiers carried these portable saws during WW1. 🪚 https://t.co/ClMPbeOWcl — Lost Temples™ (@LostTemple7) Aug 1, 2025 from http://twitter.com/LostTemple7 via IFTTT

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14. Awesome antique safes from the 19th century to secure your valuables … https://t.co/PD5UQd6dr2 — Lost Temples™ (@LostTemple7) Aug 1, 2025 from http://twitter.com/LostTemple7 via IFTTT

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5. Around 175 year old fan made by the East India Company when there was no electricity! https://t.co/6x4FMTTcr2 — Lost Temples™ (@LostTemple7) Aug 1, 2025 from http://twitter.com/LostTemple7 via IFTTT

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4. Over 100 years old table created by Josef Sailer. https://t.co/bTbwxtGMTl — Lost Temples™ (@LostTemple7) Aug 1, 2025 from http://twitter.com/LostTemple7 via IFTTT

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Beautiful Things from the time gone by 🧵 1. This is a Westinghouse gyro ceiling fan copper oxide finish from 1920 https://t.co/JteH0IWxuo — Lost Temples™ (@LostTemple7) Aug 1, 2025 from http://twitter.com/LostTemple7 via IFTTT

When implementing matrices/two-dimensional arrays, some languages choose to store them row-by-row, whereas others choose column-by-column (for example, #fortran and C). This makes equivalent sequential element-by-element traversals wildly different in efficiency. What are the

When implementing matrices/two-dimensional arrays, some languages choose to store them row-by-row, whereas others choose column-by-column (for example, #fortran and C). This makes equivalent sequential element-by-element traversals wildly different in efficiency. What are the — Mɐɹɹǝu Wʎǝɹs (@warrenmyers) Aug 1, 2025 from Twitter https://twitter.com/warrenmyers August 01, 2025 at 11:30AM via IFTTT

“You can think of modern #cryptography as a tower with three essential parts. The first part is the bedrock deep beneath the tower, which is made of hard mathematical problems. The tower itself is the second part — there you can find specific #cryptographic protocols that let you

“You can think of modern #cryptography as a tower with three essential parts. The first part is the bedrock deep beneath the tower, which is made of hard mathematical problems. The tower itself is the second part — there you can find specific #cryptographic protocols that let you — Mɐɹɹǝu Wʎǝɹs (@warrenmyers) Aug 1, 2025 …
Continue reading “You can think of modern #cryptography as a tower with three essential parts. The first part is the bedrock deep beneath the tower, which is made of hard mathematical problems. The tower itself is the second part — there you can find specific #cryptographic protocols that let you