Video wird geladen...

Video konnte nicht geladen werden

Zur Startseite

This just baffles me. How do they synchronize?!? 🤯🤯 Is it some quantum mechanics thing, or a simpler explanation?

105,555 Aufrufe • vor 5 Monaten •via X (Twitter)

45 Kommentare

Profilbild von Brandon The Old Guy 🇺🇸
Brandon The Old Guy 🇺🇸vor 5 Monaten

@StellarArtoisGB They’re all female metronomes.

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

@StellarArtoisGB 😂😂😂

Profilbild von Rex Striggow
Rex Striggowvor 5 Monaten

I’ve tried this experiment, many times, the trick is the moving platform. They will not sync up on a solid surface. It’s a beautiful cacophony though!

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

Yeah, it’s pretty rad if ask me. I don’t think I could tolerate metronome’s not being synced up for long unless there were a bunch. 😂

Profilbild von Salacious B Crumb
Salacious B Crumbvor 5 Monaten

the board moving gives momentum to the metronomes going in that direction and takes away momentum from the ones going opposite until they're all going in unison

Profilbild von McRat's Flying Circus
McRat's Flying Circusvor 5 Monaten

It is the Second Law of Thermodynamics in action. Things move towards their lowest energy state. The more the board moves, more it adds or removes energy from the metronome arms based on how they are sync'd to the heavy board. To achieve it's lowest energy state, the board must move the furthest, which requires the movement of each arm to be in sync. If an arm tries to go out of sync, the board's motion will slightly reduce and force it back into sync. Cliff Notes: It's magic.

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

I knew it was magic!!!! 💯🧙‍♂️

Profilbild von Uncomfortable Questions
Uncomfortable Questionsvor 5 Monaten

Sometimes, understanding is overrated, and it's better to just watch the magic happen. :) In case this isn't one of those times, though, this is the math that 'explains' it. 😏

Profilbild von SOVEREIGN FREN
SOVEREIGN FRENvor 5 Monaten

not quantum, they are sharing/cohering resonance through the platform they are on because it can roll on the cans. there's effectively a weak, but mechanical link between them through the board. over time, the in-phase state (swinging together) wins because it's the lowest-energy, most stable configuration. the out-of-phase states get "damped" by the board's motion until everything eventually locks together.

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

Now there is a solid explanation!!! Thanks! 🫡🏆

Profilbild von Crazytruker
Crazytrukervor 5 Monaten

It has to be vibrations through the board and cans transferring to eventually get them all aligned on the same vibration pattern

Profilbild von EdgeCrusher
EdgeCrushervor 5 Monaten

It's called coupled oscillator synchronization. Even though each metronome is a separate "oscillator", they all share a moveable platform. The independent oscillators end up influencing each other through weak mechanical interactions passed through the shared platform and eventually fall into the same rhythm. Our physics teacher in high school showed us this demonstration. It is still just as cool every time I see it.

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

@MAGACharlie2024 Now we’re cooking with gas!

Profilbild von Seth Cooney
Seth Cooneyvor 5 Monaten

I wonder how many people even noticed that the board is rocking on top of those cans.

Profilbild von Satgod
Satgodvor 5 Monaten

oscillator dynamics: metronome swings subtly rock the movable platform, transferring energy between them until they lock in step.

Profilbild von Nstig8r
Nstig8rvor 5 Monaten

@gracieback2 Two cans of beer are a good foundation for a balanced diet.

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

@gracieback2 This guy gets it. 👆💯😂

Profilbild von dave3240
dave3240vor 5 Monaten

it's the rolling base. put them on a solid surface and they won't sync.

Profilbild von Clara Montfort
Clara Montfortvor 5 Monaten

They are coupled oscillators the board rocks slightly on the cans, transferring energy until they all lock in phase classic physics demo have you tried it yourself on a wobbly surface?

Profilbild von UltraMerika
UltraMerikavor 5 Monaten

@NobodymrRobert Same quantum entanglement that puts women’s cycles on common schedule

Profilbild von Phantom II
Phantom IIvor 5 Monaten

It's conservation of momentum. The synchronization comes from energy transfer from the movement of the block they're sitting on as it moves back and forth on the cans.

Profilbild von CaptMeticuli
CaptMeticulivor 5 Monaten

Reminds me of what happens when five different women get together for a time... and well... Then they sync up. 🤣

Profilbild von ReasonableAssumption 🇨🇦 ❤️ 🇺🇸
ReasonableAssumption 🇨🇦 ❤️ 🇺🇸vor 5 Monaten

I just tried it with my metronome and nada. this is a myth..........

Profilbild von 🇺🇸Chuck E. Baby🇺🇲
🇺🇸Chuck E. Baby🇺🇲vor 5 Monaten

Simple, they have rhythm. 🤣

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

Good call. 🎯😂🤙

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

😂😂😂

Profilbild von rhombus10
rhombus10vor 5 Monaten

Rolling on the cans is what does it.

Profilbild von JoshFL
JoshFLvor 5 Monaten

Mythbusters did this one. It’s literally the inertia of the wagging wands that wiggle the base on the rollers, which causes the remaining wands to adjust to the pace of the wiggle of the base. It’s a feedback loop. It only works if the base is sufficiently friction free enough to generate a resonance. And it only scales up to a certain point.

Profilbild von The Incisive Lion 🦁
The Incisive Lion 🦁vor 5 Monaten

@end3of6days9 I would suspect that if you remove the pop cans and clamp the base plate to the table, they would not synchronize irreplaceable the table with a solid immovable surface.

Profilbild von George Pepper
George Peppervor 5 Monaten

This effect was first noticed with pendulum clocks on a wall. They would sync because the wall carried vibrations. Too solid a wall, no sync. Some mathematician finally tackled the problem and made formulas. This is from memory so happy searching. I'm having a couple nightcaps.

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

Awesome thanks! Enjoy the beverages!

Profilbild von GodlikeGamer
GodlikeGamervor 5 Monaten

Simpler yes, the trick is you need them all connected to a single object that is able to move slightly. Once that object (the white board in this case) starts rocking back and forth it slowly forces everything to rock at its pase.

Profilbild von The King of Wrong
The King of Wrongvor 5 Monaten

They 'leak' a little movement onto the platform - note how it can roll over the cans - which makes it very slightly harder to move against the aggregate motion and very slightly easier to move with it. Over time, that synchronises the pendulums.

Profilbild von D-Energy
D-Energyvor 5 Monaten

Це явище захоплення більш низькою частотою (фазою) більш високої в процессі взаємодії (інтерференції) хвиль. В даному випадку хвилі механічні.

Profilbild von 👉M-Û-R-Č-H👈
👉M-Û-R-Č-H👈vor 5 Monaten

@ValentinaElites Next question please 😆

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

@ValentinaElites Lol

Profilbild von Al Pettibone
Al Pettibonevor 5 Monaten

They're Democrat metronomes watching CNN

Profilbild von New Glory
New Gloryvor 5 Monaten

The metronomes when out of sink are robbing each other's energy and the diffrance effects the resistance by the spring were movement is lost by the pendulum and transfered into the moving platform. All want the least resistance possible. So they give a little and git a little with the residual errors being absorbed by the platform. This allows the pendulums to catch up to the rhythm which is similar to the human body always striving towards homeostasis.

Profilbild von Folding_Napkins
Folding_Napkinsvor 5 Monaten

Just my guess: With each swing the momentum of the other pendulums is shifted, so they pull their timing towards each other by increments. The key is the shared platform which lets them influence each other - otherwise they'd just swing in their own time and occasionally coincide. This is pretty much a perfect example of a Kuramoto oscillator system.

Profilbild von Carlo Ferlauto
Carlo Ferlautovor 5 Monaten

It’s a pretty straightforward issue about net unbalanced forces at each metronome. The more out of synch each metronome is, the more force it encounters as a net individual calculation. If the arm is swinging to the right, and the base is moving to the right, there is a resultant force fighting the swing. In plain terms, the arm swings at a set rate, with the force of the “driver” creating movement. If you accelerate the individual metronome by the base going from left to right, you’ll be either fighting the momentum of the arm or easing it. That small force slows or increases the speed (frequency) of the arms slightly. Eventually that slowing or speeding brings all arms into perfectly parallel movements. Note: in theory, there is one perfect combination that would remain in chaos and never synchronize, but those positions are so razor thin that it is impractical to achieve.

Profilbild von jag2060
jag2060vor 5 Monaten

@DameScorpio It's magic

Profilbild von GnosisWolf
GnosisWolfvor 5 Monaten

@DameScorpio You and I might know that, but these nerds keep trying to explain it with science…🤦🏻‍♂️

Profilbild von mwbowler 🐝🎺
mwbowler 🐝🎺vor 5 Monaten

They’re attached to the same fixed plane of the board , which synchronized the rocking by rolling on the two cans as rollers

Profilbild von Steve
Stevevor 5 Monaten

Look at the base. It moves. That impacts the whole pendulum effect. If the base was unmovable, likely they would not synchronise.....

Profilbild von etblink.eth
etblink.ethvor 5 Monaten

Stabilize the platform and they wont synchronize.

Ähnliche Videos