The Oscillatory Theory of Time by Rezső Lázár

The Oscillatory Theory of Time by Rezső Lázár Quantum Cosmology/ Philosophy of Science/Physics Everyone is welcome to this place, who wants to learn a language or can teach a language.

Students’ feedbacks on the lessons are vital.

07/02/2026
06/02/2026

In 1964, Soviet astronomer Nikolai Kardashev proposed a simple yet profound way to classify hypothetical advanced civilizations: rank them by how much energy they can harness and control. His original scale had three levels: • Type I: A planetary

31/01/2026

Why is reality dynamic rather than frozen? Why is there change rather than eternal stillness? This question sits at the boundary between physics, philosophy, and human intuition. And it cannot be answered by pointing to a single force, particle, or

27/01/2026

This paper advances the thesis that consciousness is not an emergent by-product of complex matter, but an intrinsic property of the universe. We argue that treating consciousness as fundamental resolves longstanding conceptual problems in philosophy

27/01/2026

Both general relativity (GR, Einstein 1915) and Rezső Lázár's Oscillatory Theory of Time (OTT, proposed 2025) try to explain gravity and the big picture of the universe, but they start from very different ideas. GR is one of the most tested and

26/01/2026

☀️ How long does sunlight take to reach the planets?

Light races through space at 300,000 km/s 🚀—fast enough to circle Earth 7 times in one second 🌍✨

Here’s its journey across our Solar System:

🟤 Mercury — ~3 min
🟡 Venus — ~6 min
🌍 Earth — ~8 min
🔴 Mars — ~13 min
🟠 Jupiter — ~43 min
🪐 Saturn — ~1 hr 20 min
🔵 Uranus — ~2 hr 40 min
🔷 Neptune — ~4 hrs

⏳ When you see the Sun, you’re seeing it 8 minutes in the past.
In space, looking far means looking back in time 🌌

26/01/2026

Let’s zoom out, like way out!

In this Webb image of galaxy cluster MACS J1149, we can see over 300 confirmed galaxies (and potentially hundreds more) gravitationally bound together. At the cluster’s center are elliptical galaxies, fuzzy in appearance, that dominate the cluster with their immense gravity.

Their gravity is so strong that light from galaxies behind this cluster is warped and magnified, an effect called gravitational lensing. Though you can see galaxies stretched into bright lines scattered throughout this image, right at the center is a perfect example of this phenomenon. The pink galaxy there has distinct spiral arms but resembles a jellyfish with tangled tentacles because its light has been warped and bent by gravity. This galaxy is also home to what was once the most distant single star ever discovered.

Read more at the link in the comments.

Image credit: ESA/Webb, NASA & CSA, C. Willott (National Research Council Canada), R. Tripodi (INAF - Astronomical Observatory of Rome)

26/01/2026

In ordinary life, we experience reality as a clear, solid world full of separate things: me, you, the table, the sky, yesterday, tomorrow. This is the surface layer-the low-frequency, crystallized regime in OTT. Here, time vibrates slowly and

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