The Role of x-Modulation in the Three States of Water—— An Analysis Based on World Quantum Theory
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The three states of water—solid, liquid, and gas—are among the most common phenomena in nature. Traditional physics explains them as a balance between molecular thermal motion and intermolecular forces. Within the framework of World Quantum Theory (WQT), this paper proposes a more fundamental mechanism: the three states of water are the result of the continuous modulation of the environmental coupling factor x. Changes in the value of x directly modulate the coupling strength of hydrogen bonds between water molecules, thereby determining the macroscopic state of water. When the x value is large, the coupling force is modulated to near zero, and water molecules enter a highly free gaseous state. When the x value decreases, the coupling force gradually increases, and water molecules sequentially enter the liquid state (which allows flow) and the highly ordered solid state. The triple point of water is a specific reading of x on Earth's projection layer (x = 2π). This perspective unifies temperature, phase transition, and intermolecular interactions under the framework of projective modulation, revealing that "constants" and "states" are manifestations of projection layer parameters. Keywords: World Quantum Theory; environmental coupling factor x; three states of water; hydrogen bond modulation; projection layer



