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" Hypothetical sphere, with dynamic dimensionality. We will ignore the dynamics that cause the sphere to increase in size. The volume is expressed as a wave on the surface with the fundamental frequency representing a point at the center of the sphere this wave is equal across the entire surface. Every other point inside of the sphere is represented on the surface by a frequency that rises as each point nears the surface. The surface behaves like a hologram. The quanta, or discreteness, lives in the ratios and as the resolution changes so too does the dimensionality of the forces involved, gravity being the most course grained. The unification of the forces can be described as a computational fractal dimensionality. "

R.A. Delmonico


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R.A. Delmonico quote : Hypothetical sphere, with dynamic dimensionality. We will ignore the dynamics that cause the sphere to increase in size. The volume is expressed as a wave on the surface with the fundamental frequency representing a point at the center of the sphere this wave is equal across the entire surface. Every other point inside of the sphere is represented on the surface by a frequency that rises as each point nears the surface. The surface behaves like a hologram. The quanta, or discreteness, lives in the ratios and as the resolution changes so too does the dimensionality of the forces involved, gravity being the most course grained. The unification of the forces can be described as a computational fractal dimensionality.