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General relativity and quantum mechanics are two of our most successful theories...

Piotr Kosek: "General relativity and quantum mechanics are two of our most successful theories in physics, but the problem is that they are incompatible." — True

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📅 22.03.2026 · Czy czasoprzestrzeń ma strukturę? Nowa hipoteza naukowc... · 👁️ 2

True. The claim is true. Einstein's general theory of relativity, which describes gravity and large-scale phenomena, treats spacetime as smooth and continuous. In contrast, quantum theories, which successfully describe element...

"General relativity and quantum mechanics are two of our most successful theories in physics, but the problem is that they are incompatible." "Ogólna teoria względności Einsteina po prostu nie chce poprawnie współpracować z teoriami kwantowymi, których z wielkim sukcesem używamy do opisu najmniejszych cząstek materii."
🌐 (Machine-translated — original in Polish) · Original in Polishuage
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Transcript excerpt

Oryginał w języku Polskim Open on YouTube

W teorii Einsteina czas i przestrzeń nie są zbudowane absolutnie z niczego namacalnego. Są po prostu matematycznym kontinuą składającym się z nieskończenie wielu punktów. No w każdym miejscu tej czasoprzestrzeni coś możemy umieścić, tak? I tu pojawia się gigantyczny fundamentalny problem współczesnej fizyki. Ogólna teoria względności Einsteina po prostu nie chce poprawnie współpracować z teoriami kwantowymi, których z wielkim sukcesem używamy do opisu najmniejszych cząstek materii. Dlaczego tak się dzieje? Wyjaśnijmy to na prostym kontraście. Mechanika kwantowa opisująca zachowanie elektronów, kwarków czy fotonów to świat ziarnisty. Z łaciny kwantum oznacza porcję. Wszystko na tym najniższym poziomie działa w sposób skokowy. Energia przekazywana jest w małych pakietach. Tymczasem czasoprzestrzeń Einsteina jest w pełni analog

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