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⚠️ DISCLAIMER: This channel has no official connection with Richard Feynman or his estate. Our goal is to introduce his extraordinary way of explaining physics to a new generation that never had the chance to learn from him directly. The voice used in our videos is not Richard Feynman’s real voice. It is an AI-generated tribute designed purely for education and inspiration. There is no intent to impersonate—only deep respect for one of the greatest teachers in history. 🙏 All content is created to educate, inspire curiosity, and encourage thoughtful reflection. This channel fully complies with YouTube’s monetization policies, including transparent labeling of AI-generated and synthetic media. We are independent educators with no official affiliation with Richard Feynman, his estate, or Caltech. Using modern AI tools, we aim to make Feynman’s teachings more accessible to today’s audience. What we do: We transform Richard Feynman’s original lectures and writings into engaging video formats using AI voice synthesis, while remaining faithful to his original ideas, words, and teaching style. What we do NOT do: We do not claim this is actually Richard Feynman speaking, we do not introduce our own theories, and we do not misrepresent or alter his ideas. ⚡ Why Everything Spins — Explained the Feynman Way Richard Feynman had a rare gift for making complex physics feel simple and intuitive. In this video, we explore why everything in the universe spins—using his style of reasoning. We begin with the Moon orbiting Earth and gradually scale up to planets, stars, and entire galaxies. You’ll learn why planets don’t fall into the Sun, why orbital motion is so stable, and how an ice skater pulling in their arms reveals the secret behind the formation of solar systems. Conservation of angular momentum isn’t just a physics law—it’s the reason structure, motion, and order exist throughout the universe. 📚 Sources & References Feynman, R. P., Leighton, R. B., & Sands, M. (1963). The Feynman Lectures on Physics, Vol. 1 — Chapters 18–19 Binney, J., & Tremaine, S. (2008). Galactic Dynamics (2nd ed.) — Chapters 1–2 Carroll, B. W., & Ostlie, D. A. (2017). An Introduction to Modern Astrophysics (2nd ed.) — Chapter 8 NASA/JPL Solar System Dynamics — Planetary Orbital Elements Goldreich, P., & Ward, W. R. (1973). The Formation of Planetesimals, The Astrophysical Journal, 183, 1051–1061