Tuesday, July 14, 2026

Stephen Wolfram: One Rule to Ring them All...

Guide:
  • 0:00 Intro 
  • 1:08 Chapter 1: The limits of theoretical physics 
  • 5:50 Chapter 2: A computational understanding of the world 
  • 12:03 Rule 30: a simple program that outputs pure randomness 
  • 15:48 Evolution and machine learning are the same trick 
  • 18:19 What computational irreducibility means for science 
  • 25:00 Chapter 3: A new kind of theory of everything 
  • 31:36 The ruliad: every possible computation, in one object 
  • 35:03 The second law, explained by the limits of our minds 
  • 38:38 Why the universe exists isn't the real question — why we do is 
  • 42:53 Chapter 4: If the universe is a program, what is the meaning of life? 
  • 44:59 Free will as a side effect of computational irreducibility 
  • 48:06 AI as a civilization we're learning to coexist with


6 comments:

  1. video is better than text?

    ReplyDelete
  2. The 1st video is Chapter 3 of the 2nd video. I prefer the last video... ;)

    ReplyDelete
  3. heh
    it gone through

    ReplyDelete
  4. No... World Cup 2026: Bronze Final
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    stephen wolfram 99967
    When entering "99967" into a computational environment like Wolfram|Alpha or using the Wolfram Language, the system processes it based on its mathematical properties:

    Wikipedia
    +1
    Mathematical Properties of 99967
    Classification: Composite number (not a prime number).
    Prime Factorization: 7 × 14281
    Divisors: 1, 7, 14281, 99967
    Binary Representation: 11000011001111111
    Exploring Cellular Automata Rules
    If you are looking at this number through the lens of Stephen Wolfram's research in A New Kind of Science (such as 1D or 2D cellular automata rules):

    YouTube
    ·Closer To Truth
    +1
    Rule 99967: In a standard elementary (nearest-neighbor, 2-color) cellular automaton, rules only go up to Rule 255.
    Higher Range Rules: A number as large as 99967 typically corresponds to a rule space with more states or a larger neighborhood (such as totalistic cellular automata or 2D Turing machines) studied extensively in the Wolfram Physics Project

    ReplyDelete