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Population III stars are the first stars that formed from pristine hydrogen and...

Piotr Kosek: "Population III stars are the first stars that formed from pristine hydrogen and helium just after the universe cooled down after the Big Ban..." — True

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📅 06.05.2026 · Webb odkrył gwiazdy III populacji? Wszystko na to wskaz... · 👁️ 10

True. Piotr Kosek's claim is consistent with current astronomical knowledge. Population III stars are considered the first stars that formed in the Universe, composed almost entirely of pristine hydrogen and helium, which orig...

"Population III stars are the first stars that formed from pristine hydrogen and helium just after the universe cooled down after the Big Bang. They did not contain an ounce of carbon, oxygen, or iron. These elements simply did not exist yet. They had to be created, as it were, cooked inside these first stars." "Gwiazdy trzeciej populacji to pierwsze gwiazdy, które powstały z dziewiczego wodoru i Helu tuż po tym, jak wszechświat ostygł po wielkim wybuchu. Nie miały w sobie ani grama węgla, tlenu czy żelaza. Te pierwiastki po prostu jeszcze nie istniały. Musiały dopiero powstać, zostać niejako ugotowane we wnętrzach tych pierwszych gwiazd."
🌐 (Machine-translated — original in Polish) · Original in Polishuage
Factual claim 🔹 Other AI assessment confidence: 100% 🌍 Global Source on YouTube

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Transcript excerpt

Oryginał w języku Polskim Open on YouTube

To pierwsze gwiazdy, które powstały z dziewiczego wodoru i Helu tuż po tym, jak wszechświat ostygł po wielkim wybuchu. Nie miały w sobie ani grama węgla, tlenu czy żelaza. Te pierwiastki po prostu jeszcze nie istniały. Musiały dopiero powstać, zostać niejako ugotowane we wnętrzach tych pierwszych gwiazd. No i te gwiazdy trzeciej populacji to takie potwory wagi ciężkiej, jakby nie patrzeć. Skrajnie różne od naszego spokojnego słońca. Były ogromne. Mowa o masa od kilkunastu do nawet kilkuset razy większych niż masa słońca. Ich temperatura była tak wysoka, że świeciły oślepiającym błękitno-białym światłem, osiągając dziesiątki tysięcy stopni więcej niż nasza gwiazda. Skąd to wiemy? Skoro nie widzieliśmy, no możemy sobie sprawdzać jak to wygląda, bo wiemy jak zachowuje się materia, kiedy dokładamy jej coraz więcej. jest coraz gęstsza i coraz bardziej przetwarza wodór i lekki pierwiastek taki jak Hell w swoim wnętrzu. Przez swoją gigantyczną masę żyły też bardzo szybko i bardzo intensyw

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