А вы ждёте выхода Python 4? Ну зря ждёте😭
По словам Гвидо, ему хватило проблем с переходом со 2го на 3й)
Лучше постепенно развивать имеющийся функционал с полной совместимостью кодовой базы чем делать такие резкие изменения.
Велика вероятность что выше 3 мажорная версия более не поднимется.
А как же обещания про невероятные ускорения в Python 4? Очевидно, что теперь они все будут добавляться в 3ю ветку.
Вот здесь можно почитать про планы ускорения
где Гвидо обещает скорость 2х уже в 3.11 и х5 через 4 года!
Здесь можно посмотреть следующие шаги по оптимизации.
#offtop#2to3
🪐 When the European Space Agency’s Planck satellite mapped the cosmic microwave background—the faint afterglow of the Big Bang—it found the universe’s temperature is nearly uniform everywhere, but with subtle hot and cold spots only millionths of a degree apart. These tiny temperature variations, scattered across the sky, serve as a cosmic “fossil record,” encoding clues to how galaxies, clusters, and the vast cosmic web evolved from the universe’s earliest moments. ✨
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🪐 The cosmic microwave background, a faint glow that bathes the entire universe, carries subtle imprints called "acoustic peaks"—tiny wiggles in its temperature pattern, mapped by observatories like Planck. These acoustic peaks reveal the sound waves that rippled through the hot, dense plasma of the early universe, showing how matter and energy once "rang" together before the first atoms even formed. ✨
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🪐 In 2003, NASA's Wilkinson Microwave Anisotropy Probe (WMAP) created an all-sky map showing subtle temperature differences in the cosmic microwave background, the afterglow of the Big Bang. WMAP’s high-resolution data revealed a puzzling "cold spot" in the direction of the Eridanus constellation, a region cooler than expected that could hint at some of the universe’s deepest cosmic mysteries—such as massive voids or unusual early-universe physics. ✨
#microwaveradiation⚡#WMAP⚡#Eridanus⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space
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🪐 The cosmic microwave background—an ancient light left over from the Big Bang—contains a hidden signal: tiny patterns of polarization, or the way its waves are oriented. These "B-modes," discovered in part by the BICEP2 telescope at the South Pole, are faint twists in the light that could provide direct evidence of gravitational waves rippling through the early universe, opening a window into its very first moments. ✨
#microwaveradiation⚡#polarization⚡#gravitywaves⚡#nasa⚡#galaxy⚡#stars⚡#astronomy⚡#universe⚡#cosmos⚡#space
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