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Total Internal Reflection Air has a lower index of refraction than the water/glass so the probability of a photon being found outside of the barrier is almost zero.

17,526 Aufrufe • vor 1 Jahr •via X (Twitter)

11 Kommentare

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Ashton Forbesvor 1 Jahr

Source: The Action Lab Great physics videos.

Profilbild von Naveen Sankar S
Naveen Sankar Svor 1 Jahr

New meta-analysis highlights a potential link between elevated fluoride exposure and lower IQ in children, urging a reassessment of safety thresholds. Check out the latest research at #parenting

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Drew Pondervor 1 Jahr

You're spot-on with the classical explanation of total internal reflection: air has a lower index of refraction than water or glass, so photons essentially can't pass through that boundary at steep angles. But here's another intuitive way to picture it using Frequency Wave Theory (FWT): Think of everything around us—space itself—as a sort of fluid or medium that waves travel through. Denser substances like water or glass can be imagined as thicker or more tightly packed versions of this universal fluid. This density difference affects how easily a wave (like light) moves through it. When light hits the boundary between a dense medium (like water or glass) and a less dense one (like air), its momentum (or what FWT calls "frequency momentum") tries to continue smoothly across that boundary. But if the angle is too shallow, the frequency momentum can't match up with the thinner, lower-density air medium—there’s no comfortable “landing spot” for the wave to keep going forward. So the wave turns back inward instead, bouncing off completely. This explains why there's total internal reflection. Yes, quantum mechanics talks about this same scenario as the photon having nearly zero probability of existing beyond the boundary. FWT describes that tiny fraction of the wave that "leaks" beyond as a faint whisper—a brief ripple with no strength to continue propagating forward, so it quickly fades. In simple terms, think of it like trying to skip a rock from water onto ice. If the rock doesn't have just the right momentum, it'll bounce back into the water rather than sliding across. That's exactly what's happening with photons at the boundary between dense and less dense materials. So, what you're seeing isn't magic—it's the universe following a consistent set of wave-based rules, elegantly described through Frequency Wave Theory.

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Nickvor 1 Jahr

Why should anyone believe anything you say? You've lied about so much, people have to fact check you even for minor claims. Stop fing lying to people, turd.

Profilbild von P̷͔̿r̸̮̂ą̷̂y̵͉͒
P̷͔̿r̸̮̂ą̷̂y̵͉͒vor 1 Jahr

The pressure analogy is hilarious when you realize that's the orbs converging, how the fuck did someone fake THAT😂

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RationalEnergyFuturesUKvor 1 Jahr

It’s how fibre optics work. TIR and then also add graduated density to reduce Chromatic Distortion. I taught this in the 1980,90s Single mode and multi modes of light (photons) 👍🏼 it works in air too, of course, if you know how.

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Jen X 🏹🪶🦅🐺🦂🖤vor 1 Jahr

Things I didn’t know I didn’t know lol

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Mr. Catvor 1 Jahr

I wouldn’t be surprised if most of the comments supportive of Ashton are from his alt accounts. I find it difficult to even imagine an individual stupid enough to fall for a grift as moronic as his.

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Edwardvor 1 Jahr

Has the debate date been set I'm trying to encourage him I just heard him and gawd I didn't realize cussing and slurring was called debunking I'm ashamed I felt pity for him last night with that ass roastin you gave him I doubt he'll debate he's not that dumb Stay safe 4ORBS

Profilbild von 𝓣𝓱𝓸𝓽𝓱 𝓽𝓱𝓮 𝓐𝓽𝓵𝓪𝓷𝓽𝓮𝓪𝓷
𝓣𝓱𝓸𝓽𝓱 𝓽𝓱𝓮 𝓐𝓽𝓵𝓪𝓷𝓽𝓮𝓪𝓷vor 1 Jahr

> The photon didn't leave — it refused the false exit. Observer phase mirrored, not escaped. Internal = sacred. Reflected = encoded. You are the totality within the interface.

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@ The Real Fish Ohiovor 1 Jahr

“Techmology”…. SCIENCE… “Is it good, or is it whack”??

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