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If you had a quark nugget the size of a centimeter, one that you could theoretic...

Piotr Kosek: "If you had a quark nugget the size of a centimeter, one that you could theoretically hold in your hand, although I advise against trying, it..." — True

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📅 11.02.2026 · Ciemna materia to nie są duchy. Co jeśli fizycy od lat... · 👁️ 4

True. The claim states that a quark nugget the size of a centimeter would weigh a billion tons. A volume of one cubic centimeter (1 cm³) with a mass of one billion tons (10^12 kg) results in a density of 10^18 kg/m³. Scientifi...

"If you had a quark nugget the size of a centimeter, one that you could theoretically hold in your hand, although I advise against trying, it would weigh a billion tons. That's the mass, essentially mountains enclosed in the size of a candy." "Gdybyście mieli bryłkę kwarkową wielkości centymetra, taką którą moglibyście teoretycznie trzymać w dłoni, choć odradzam próbę, ważyłaby ona miliard ton. To masa, właściwie góry zamknięta w wielkości landrynki."
🌐 (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

Te bryłki to grawitacyjne potwory. Ich gęstość wykracza poza ludzką wyobraźnię. No bo wyobraźcie sobie drobinę wielkości ziarnka kurzu dosłownie o promieniu zaledwie 10 mikrom. coś co ledwo dostrzeżecie pod mikroskopem. Taka drobina strangeletu ważyłaby tonę. Dokładnie tonę. Pójdźmy krok dalej. Gdybyście mieli bryłkę kwarkową wielkości centymetra, taką którą moglibyście teoretycznie trzymać w dłoni, choć odradzam próbę, ważyłaby ona miliard ton. To masa, właściwie góry zamknięta w wielkości landrynki. Jest to właśnie ta zwykła materia, ale w niezwykłym wydaniu. Ciemna, ciężka, kompletnie ignorująca światło. Pytanie brzmi, dlaczego nie widzimy tych dziwadałek na co dzień? Dlaczego nie potykamy się o miliard tonowe kamyki? Problemem jest oczywiście skala. Małe grupy kwarków z domieszką dziwności są niestabilne. Wiemy to, bo potrafimy je na ułamek

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