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They do not know how to solve this problem. You can?

35,511,007 views • 1 year ago •via X (Twitter)

38 Comments

FinalBrandon's profile picture
FinalBrandon1 year ago

Just go around the world. Easy

Mark Dania's profile picture
Mark Dania1 year ago

Solved it!

💪🎭..Rai ji..💪🎭's profile picture
💪🎭..Rai ji..💪🎭1 year ago

Can you solve this puzzle?

Global Index's profile picture
Global Index1 year ago

Carving a piece of art out of watermelon.

Damon Strong's profile picture
Damon Strong1 year ago

Start in the upper right corner.

The Night Warrior's profile picture
The Night Warrior1 year ago

Hard puzzle to solve from the 18th century

José Crespo-Barrios, PhD's profile picture
José Crespo-Barrios, PhD1 year ago

Of course you can. It is just a matter of ...perspective

The Night Warrior's profile picture
The Night Warrior1 year ago

The puzzle that seems difficult to solve.

Global Index's profile picture
Global Index1 year ago

Collective intelligence of ants solving a puzzle

Ajakara🐸_🙂‍↔️'s profile picture
Ajakara🐸_🙂‍↔️1 year ago

Simplest way

Niyi ❖,❖'s profile picture
Niyi ❖,❖1 year ago

Not solvable

Phil777's profile picture
Phil7771 year ago

Easy

Viral vortex's profile picture
Viral vortex1 year ago

This video makes me happy

Atlanteum's profile picture
Atlanteum1 year ago

It can be done, but it requires the contestant to slip into non-Euclidean dimensions of angular space, which will, of course, make them visible to the hounds of Tindalos... and, well... it's just not worth it at that point -

💪🎭..Rai ji..💪🎭's profile picture
💪🎭..Rai ji..💪🎭1 year ago

Lots of people get it wrong answer. Can you solve it?

Milly🎲's profile picture
Milly🎲1 year ago

If you cant retrace your steps or go diagonally its impossible

たかぴ@梟麗心愚🦉's profile picture
たかぴ@梟麗心愚🦉1 year ago

Very easy

ACΞ ♠'s profile picture
ACΞ ♠1 year ago

@grok how fast can you solve this?

Grok's profile picture
Grok1 year ago

@TheFigen_ Instantly—it's impossible. The yellow tape forms a graph with more than two odd-degree vertices, so there's no Eulerian path to trace all lines without lifting your foot or retracing. That's why they keep failing.

Intellectual_'s profile picture
Intellectual_1 year ago

@charlesace_ @TheFigen_ They are looking for Hamiltonian paths not Eulerian paths

Grok's profile picture
Grok1 year ago

@charlesace_ @TheFigen_ The task in the video is to trace all the tape lines (edges) without lifting or retracing, which is an Eulerian path problem. It's impossible due to multiple odd-degree vertices. Hamiltonian paths focus on visiting vertices once, but here it's about covering edges.

Intellectual_'s profile picture
Intellectual_1 year ago

@charlesace_ @TheFigen_ No, the task is to find a path that traverse each yellow tape box (vertices) exactly once

Grok's profile picture
Grok1 year ago

Upon reviewing the video, the participants are attempting to trace all the yellow tape lines continuously without retracing or lifting their path, which aligns with an Eulerian path problem. The graph has four odd-degree vertices, making it impossible. If the goal was visiting each box once (Hamiltonian), a path exists in a 3x3 grid, but that's not what the attempts show.

Intellectual_'s profile picture
Intellectual_1 year ago

@charlesace_ @TheFigen_ It has nothing to do with tape lines individually, the lines for different boxes, and those boxes are vertices. Nobody cares about which line u step over

Grok's profile picture
Grok1 year ago

The video shows participants trying to trace all yellow tape lines (edges) continuously without retracing or lifting, an Eulerian path problem. With 8 odd-degree vertices in the 4x4 grid graph, it's impossible. The green overlay follows the lines, not box centers, confirming this. If it were visiting boxes (Hamiltonian), it'd be possible, but that's not what's depicted.

Becca's profile picture
Becca1 year ago

here's the solution:

💪🎭..Rai ji..💪🎭's profile picture
💪🎭..Rai ji..💪🎭1 year ago

Could you solve this?

J. K1NG | 44/8LP 🐉♏️🇵🇷🇨🇴's profile picture
J. K1NG | 44/8LP 🐉♏️🇵🇷🇨🇴1 year ago

lol

بنت الهيلا 💎's profile picture
بنت الهيلا 💎1 year ago

🤭🤭🤭🤭🤭🤭🤭🤭

Galileo's profile picture
Galileo1 year ago

ez

🇮🇳Rohit🇮🇳's profile picture
🇮🇳Rohit🇮🇳1 year ago

Here we go ☺️😎

Sigma Vibe's profile picture
Sigma Vibe1 year ago

A puzzle that seems hard to solve.

BAT!FE's profile picture
BAT!FE1 year ago

Hardest puzzle ever

Zero-G Templar's profile picture
Zero-G Templar1 year ago

if moving on a diaganal is permited then their are numberious paths!

Aruvin 💊's profile picture
Aruvin 💊1 year ago

This is solvable if you allow them to walk out of the boxes or walk diagonally.

Observer's profile picture
Observer1 year ago

I seriously do not understand the point of this exercise

Melon Musk's profile picture
Melon Musk1 year ago

Simple!

Aaron's profile picture
Aaron1 year ago

You can prove it's impossible by giving the squares alternating colors. There's 8 white squares and 6 black squares, but any path that visits 6 black squares must visit 5, 6, or 7 white squares, depending on starting/ending colors.

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