@yearboox: Glad I saved it #yearboox #vintagehouse #originalsong #jericho #1920s

yearboox
yearboox
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Region: NL
Friday 04 September 2026 14:55:36 GMT
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odetoadele
odeto :
Nice! Reminds me of Alle Farben around 2012ish
2026-09-24 18:14:37
1
anoushka.emerova
Anoushka N. Emerova :
Anyone from Germany here who likes this kind of music? 🙈
2026-09-24 18:32:58
2
neon.bandido
Neon Bandido :
love it. its a pitty that is AI.
2026-09-07 21:32:19
1
annaelisa_v8
Annælisa :
Me all the day with this sound
2026-09-07 15:09:43
465
yearboox
yearboox :
Should I finish this?
2026-09-04 14:55:49
67
mckytv_lux
Daito :
When can i do it????
2026-09-21 20:30:34
23
chrisrqpzkn
chrisrqpzkn :
where are my high frequencies?
2026-09-24 19:46:36
2
brut.fm
Брут :
Nice. But alot
2026-09-25 06:53:53
0
sorayaya316
Sorayaya 💙💙💙 :
we need on Spotify 🥰🥰🥰
2026-09-07 22:00:36
121
maurooooo54_
Mauro🇩🇪🇮🇹 :
Beat is good
2026-09-24 11:06:58
19
maxderackermann
maxderackermann :
nearly 15 years later, electro swing is back - lets gooo 💃🕺
2026-09-08 07:08:12
118
stephaniegalera30400
stephanie :
Spotify please
2026-09-08 09:24:21
79
kill_mr_dj
Kill_mR_DJ :
I so want to like this, but I'm afraid this might be an AI
2026-09-08 00:14:06
5
andrescu_music
Andrescü :
Track id! Spotify! Plz
2026-09-13 09:25:30
5
himmxlstatxn
Vanessa :
If you don’t remind me when you’ve dropped this, imma be mad
2026-09-08 14:24:29
5
numbnuttzzzz
NumbNuttzzzz :
did you pay for this vid gettiing in to my algorythm? its the 6 time i hear this. love it tho
2026-09-18 01:39:46
13
laura89181524
Laura :
Is this on Spotify please 🙏🏻
2026-09-08 20:21:45
13
maeix_elaine_prvt
MaeixelainePrvt :
where can I find?
2026-09-07 18:24:34
14
nikhouse187
Nikhouse :
2026-09-07 20:14:42
9
trackdaygenius
Geni :
Release it already, ready to drop some coin for your labour
2026-09-12 18:35:24
6
_kimera.it
KIMERA :
2026-09-07 20:01:03
5
impacton90
Paxeem :
Release it already in youtube music 😡
2026-09-09 10:21:11
7
nichola983
xmaggiex :
2026-09-07 19:50:05
8
marcosindahood
Marcos :
pls release it on spoty
2026-09-08 11:45:34
7
wildbaby23
Магдалена Джеймс :
please , make a Youtube channel and post
2026-09-08 03:45:21
10
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Graham’s number arose because mathematicians needed a number that was guaranteed to be bigger than a certain quantity in a particular mathematical problem. How big is it? It is far, far larger than: * A million * A billion * A googol (1 followed by 100 zeros) * A googolplex (1 followed by a googol zeros) * Even numbers that are themselves described using enormous powers and exponent towers For comparison, you couldn’t write Graham’s number out in ordinary decimal notation even if every particle in the observable universe were turned into a piece of paper and ink. How is it constructed? This is where it gets crazy. Mathematicians use a special notation called up-arrow notation, created by Donald Knuth. One arrow represents repeated exponentiation. More arrows represent repeating that operation itself an enormous number of times. Graham’s number starts with a number called g₁, which already involves three arrows and the number 3. Then: g₂ is created by taking 3 and using g₁ arrows between the 3s. Then g₃ uses g₂ arrows, and this continues. This process is repeated 64 times. The final number, g₆₄, is Graham’s number. The mind-blowing part: The first number in the sequence is already absurdly huge. But Graham’s number isn’t simply “a really big exponent.” It’s a number created by repeatedly increasing the number of operations used to create the next number. So even though Graham’s number is finite, its size is almost impossible for humans to comprehend. And here’s a fun fact: Graham’s number is not the largest number mathematicians know. There are many much larger finite numbers. It’s famous because of the mathematical problem that produced it, not because it is the absolute biggest possible number. #truecrime #fyp #edit #ai
Graham’s number arose because mathematicians needed a number that was guaranteed to be bigger than a certain quantity in a particular mathematical problem. How big is it? It is far, far larger than: * A million * A billion * A googol (1 followed by 100 zeros) * A googolplex (1 followed by a googol zeros) * Even numbers that are themselves described using enormous powers and exponent towers For comparison, you couldn’t write Graham’s number out in ordinary decimal notation even if every particle in the observable universe were turned into a piece of paper and ink. How is it constructed? This is where it gets crazy. Mathematicians use a special notation called up-arrow notation, created by Donald Knuth. One arrow represents repeated exponentiation. More arrows represent repeating that operation itself an enormous number of times. Graham’s number starts with a number called g₁, which already involves three arrows and the number 3. Then: g₂ is created by taking 3 and using g₁ arrows between the 3s. Then g₃ uses g₂ arrows, and this continues. This process is repeated 64 times. The final number, g₆₄, is Graham’s number. The mind-blowing part: The first number in the sequence is already absurdly huge. But Graham’s number isn’t simply “a really big exponent.” It’s a number created by repeatedly increasing the number of operations used to create the next number. So even though Graham’s number is finite, its size is almost impossible for humans to comprehend. And here’s a fun fact: Graham’s number is not the largest number mathematicians know. There are many much larger finite numbers. It’s famous because of the mathematical problem that produced it, not because it is the absolute biggest possible number. #truecrime #fyp #edit #ai

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