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Изворен канал @pythonotes · Post #32 · 7 фев.

Скорее всего уже слышали, что складывать строки через + это плохая практика. Падение производительности, и всё такое. Без лишних слов, давайте измерять: from timeit import timeit def t1(): # складываем 10 строк через + из переменной t = 'text' for _ in range(1000): s = t + t + t + t + t + t + t + t + t def t2(): # склеиваем список строк через метод join arr = ['text'] * 10 for _ in range(1000): s = ''.join(arr) def t3(): # складываем через + но не из переменной а непосредственно инлайн объекты for _ in range(1000): s = 'text' + 'text' + 'text' + ... # всего 10 раз Теперь каждую строку склейки запустим по 10М раз >>> timeit(t1, number=10000) 0.21951690399964718 >>> timeit(t2, number=10000) 1.4978306379998685 >>> timeit(t3, number=10000) 0.2213820789993406 Хм, а нам говорили что через "+" это плохо и медленно ))) 😁 Тут стоит учитывать, что речь идёт о склейке множества длинных строк. Давайте изменим условия: def t4(): t = 'text'*100 for _ in range(1000): s = t + t + t + t + t + t + t + t + t def t5(): arr = ['text'*100] * 10 for _ in range(1000): s = ''.join(arr) def t6(): for _ in range(1000): s = 'text'*100 + 'text'*100 + ... # всего 10 раз >>> timeit(t4, number=10000) 12.795130728000004 >>> timeit(t5, number=10000) 2.642637542999182 >>> timeit(t6, number=10000) 0.2184546610005782 Вот, уже другой разговор, сразу видна разница, в среднем в 6 раз. Но погодите, почему последний тест t6() по скорости такой же как и t3()? Ведь строки теперь в 100 раз длиннее! Это вопросы оптимизации кода, какие простые изменения ускоряют или замедляют выполнение программы. Мы столкнулись с примером обхода обращения к переменной. Например, именно так работает директива #define в С++, во время компиляции подставляя значение переменной вместо ссылки на неё. В Python это тоже работает, но часто ли вы сможете встретить такой способ работы со строками? К сожалению, способ почти только теоретический. В целом, тесты показали то, что мы хотели. Делаем выводы самостоятельно. Полный листинг 🌍 #tricks

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Interesting Planet 🌍

@interesting_planet_facts · Post #811 · 25.09.2025 г., 12:11

🌎 The male pipa toad, found in South American rivers, carries dozens of eggs in pockets on its back skin. As the eggs develop, young toads emerge fully formed through openings in his skin. Each pocket can hold up to 100 eggs, making this reproduction method unique among amphibians. ✨ #animals⚡#amphibians⚡#wildlife 👉subscribe Interesting Planet 👉more Channels ​

Amazing Geography 🌍

@amazingeo · Post #628 · 12.02.2026 г., 20:31

🌍 The Western Ghats in India hold more amphibian species than all of Europe, packed into a narrow mountain strip. This biodiversity hotspot shelters ancient frogs found nowhere else on Earth. ✨ #biodiversity⚡#hotspots⚡#amphibians⚡#geography⚡#nature⚡#earth 👉subscribe Amazing Geography 👉more Channels ​

Amazing Geography 🌍

@amazingeo · Post #705 · 01.05.2026 г., 20:31

🌍 Some tropical frogs breed in water-filled leaves high in the rainforest canopy. Their tadpoles grow safely above ground, rarely touching the forest floor their entire lives. ✨ #rainforest⚡#amphibians⚡#canopy⚡#geography⚡#nature⚡#earth 👉subscribe Amazing Geography 👉more Channels ​

Interesting Planet 🌍

@interesting_planet_facts · Post #505 · 05.08.2025 г., 18:22

🌎 The glass frog of Central and South America has translucent skin on its belly, making its heart and organs visible—a true living “window” into biology! This see-through feature offers researchers a unique view of amphibian anatomy without special equipment. ✨ #amphibians⚡#rainforest⚡#transparency 👉subscribe Interesting Planet

Interesting Planet 🌍

@interesting_planet_facts · Post #499 · 04.08.2025 г., 18:22

🌎 The rainbow mantella frog of Madagascar sports neon green and orange skin, warning predators of its toxicity. These tiny amphibians gain their deadly defenses from eating certain ants and mites in the wild. ✨ #amphibians⚡#Madagascar⚡#toxins 👉subscribe Interesting Planet

Interesting Planet 🌍

@interesting_planet_facts · Post #1267 · 01.02.2026 г., 22:11

🌎 The axolotl, a salamander native to Mexico, can regenerate entire limbs, spinal cord, heart tissue, and even parts of its brain. Unlike most amphibians, axolotls remain aquatic and gilled for their whole lives due to a trait called neoteny. ✨ #axolotl⚡#regeneration⚡#amphibians 👉subscribe Interesting Planet 👉more Channels ​

Google Facts™ [ ️@googlefactss🌎]

@googlefactss · Post #40930 · 14.04.2026 г., 22:01

The Titicaca water frog (Telmatobius culeus) can absorb oxygen through its skin, an adaptation that helps it survive in the high-altitude waters of Lake Titicaca, where oxygen levels are low. This unique ability allows it to thrive in an environment where most other species struggle. The frog's skin is highly vascularized, increasing its efficiency at absorbing oxygen directly from the water. 💧🐸⛰️ [Read more] (Frog memes allowed here) @googlefactss #FrogFacts#TiticacaFrog#TelmatobiusCuleus#NatureScience#UniqueAdaptations#Amphibians#ItsWednesdayMyDudes If you have ideas or feedback contact us: @Googlefactss_Feedback_bot

Google Facts™ [ ️@googlefactss🌎]

@googlefactss · Post #40864 · 27.03.2026 г., 07:01

Axolotls, also known as Ambystoma mexicanum, get their name from the Aztec language Nahuatl, meaning "water monster" or "water god." According to legend, they are the earthly form of Xolotl, the Aztec god who transformed into a salamander to avoid sacrifice. These creatures are famous for regenerating limbs, hearts, and even parts of their brains. They stay in their juvenile form for life, a trait called neoteny. In the wild, axolotls are critically endangered, with fewer than 1,000 left in Mexico’s Xochimilco and Chalco lakes. Habitat loss, pollution, and invasive species like tilapia are major threats. Conservation efforts are underway to restore their habitat and protect them from extinction. 🦎🌍💧 [Read more] If you have one as a pet, feel free to share with us! @googlefactss #Axolotl#WaterGod#EndangeredSpecies#Regeneration#Neoteny#Conservation#Wildlife#Mexico#Amphibians