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supersymmetry, which suggests that every known particle has a heavier partner, a...

Piotr Kosek: "supersymmetry, which suggests that every known particle has a heavier partner, and WIMPs would be precisely such partners, heavy particles t..." — True

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📅 03.05.2026 · Ciemna materia przemówiła? Sensacyjne dane z teleskopu... · 👁️ 2

True. The claim aligns with widely accepted concepts in particle physics. Supersymmetry (SUSY) postulates the existence of superpartners for each Standard Model particle, differing in spin and mass. WIMPs (Weakly Interacting M...

"supersymmetry, which suggests that every known particle has a heavier partner, and WIMPs would be precisely such partners, heavy particles that react with almost nothing except gravity." "supersymetria, która sugeruje, że każda znana nam cząstka ma swojego cięższego partnera i wimpy miałyby być właśnie takimi partnerami, ciężkimi cząstkami, które niemal z niczym nie reagują, oprócz właśnie grawitacji."
🌐 (Machine-translated — original in Polish) · Original in Polishuage
Factual claim 🔬 Technology AI assessment confidence: 90% Source on YouTube

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Transcript excerpt

Oryginał w języku Polskim Open on YouTube

bicie. Proton ma antyproton, elektron ma pozyton i tak dalej. Mają tę samą masę, ale przeciwne ładunki. Kiedy się spotkają, dochodzi do najbardziej wydajnej reakcji we wszechświecie, czyli wspomnianej wcześniej anihilacji. Nawet zwykły banan emituje śladowe ilości antymaterii, tylko że w skali kosmicznej, gdy wimpy zderzają się ze sobą w gęstych obszarach galaktyki, dochodzi do błysków, które teoretycznie możemy zmierzyć, zakładając oczywiście, że te wimpy w ogóle istnieją oczywiście. No i tutaj kłaniamy się, moi drodzy, Albertowi Einsteinowi i jego najsłynniejszemu równaniu, czyli no jak pewn

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