Theory of Magnetivity

Theory of Magnetivity

Magnetivity Is Dark Matter

A Harmonic Shell Framework for Cosmic Structure

The Cosmic Mystery of Missing Mass

Standard cosmology requires "dark matter" to explain why galaxies spin faster than our laws of gravity predict. Yet, after decades of searching, no dark matter particle has ever been found. This section provides an overview of this foundational problem in physics, explaining why new theories are needed to understand the structure of our universe.

Galaxy Rotation Curves: Predicted vs. Observed

This chart illustrates the discrepancy. The "Predicted" line shows the rotational speed of stars based on the visible matter in a galaxy. The "Observed" line shows the actual, much higher speeds, suggesting the presence of unseen mass—or a new understanding of physics.

A New Premise: Magnetivity

The Magnetivity-Recursive Universe Hypothesis (MRUH) offers an alternative. It proposes that the effects we attribute to dark matter are not caused by exotic particles, but by an emergent, scale-invariant magnetodynamic field inherent to spacetime. This "magnetivity" organizes matter through harmonic resonance, creating the structures we observe across all scales.

The Mathematical Foundation

MRUH is built on a new mathematical framework that extends our understanding of spacetime fields. Hover over the colored terms in the equations below to learn about their role in the theory.

1. Magnetodynamic Field Tensor

This tensor, \(\mathcal{M}_{\mu\nu}\), defines the fundamental field of magnetivity.

$$ \mathcal{M}_{\mu\nu} = \partial_\mu A_\nu - \partial_\nu A_\mu + \gamma Coupling constant linking magnetism to curvature. C_{\mu\nu} A novel tensor representing curvature-induced effects. $$

2. Resonant Field Equation

This equation describes how the field interacts with mass-energy to create resonance.

$$ \nabla^\mu \mathcal{M}_{\mu\nu} = \kappa A threshold function that depends on the cosmic scale. J_\nu The mass-energy current, analogous to an electric current. $$

3. Quantized Resonant Radii

From the field equations, we can derive the specific, discrete radii where stable, resonant shells of matter should form.

$$ r_n = \frac{n \pi v_\phi The effective propagation speed of magnetodynamic waves. }{\omega_n} $$

Visualizing a Recursive Universe

This is the core of MRUH: the idea that the same resonant pattern repeats across all cosmic scales. The interactive simulation below allows you to explore these predicted harmonic shells. Use the slider to zoom through scales and see how known physical phenomena align with the model's predictions.

Planck Atomic Biological Planetary Galactic

Implications of Magnetivity

If correct, MRUH would fundamentally change our understanding of the cosmos.

Reframing Dark Matter

Dark matter ceases to be a missing particle and instead becomes an emergent property of spacetime's magnetodynamic behavior.

Predictive Power

The model predicts the hierarchical structure of the universe, from atomic shells to galaxy clusters, from a single, scale-invariant principle.

A Testable Alternative

MRUH makes predictions that can be tested with instruments like the SKA, gravitational lensing surveys, and CMB analysis.

Magnetivity-Recursive Universe Hypothesis (MRUH)

An Interactive Exploration | July 2025

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