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(Emergent gravity, as discussed in 'Planck-Scale Geometric Core,' provides the foundational framework for this exploration. Here, the focus is on Chapter 5: Quantum Tunnelling, an essential mechanism extending our understanding of gravitational collapse and energy release at the Planck scale.) This video explores the concept of Planck-scale Planck stars, a theoretical framework that addresses the breakdown of General Relativity at singularities. At the Planck scale, quantum gravitational effects introduce corrections to Einstein’s equations, stabilising collapsing matter into dense, finite objects. Chapter Guide: 00:00 Chapter 1: The Inevitability of Singularities and the Planck Scale 03:00 Chapter 2: A New Perspective on Gravity 03:43 Chapter 3: The Universe's Resistance to Infinite Compression 04:23 Chapter 4: Symmetry Breaking and the Birth of Planck Stars 05:18 Chapter 5: Escaping the Black Hole (Focus: Quantum Tunnelling) 08:10 Chapter 6: Seeds of Structure 10:11 Chapter 7: Searching for Planck Star Signatures Key topics include the role of Loop Quantum Gravity in quantising spacetime, the resistance of quantum foam to infinite compression, and the emergence of Planck stars through symmetry breaking. Chapter 5 delves into quantum tunnelling, describing how particles escape the gravitational pull of these cores, releasing energy in observable forms such as gamma rays and gravitational waves. This hypothesis offers a bridge between General Relativity and Quantum Mechanics, providing new insights into the universe’s most extreme conditions.