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March 12, 20265 citationsOpen Access

The Electro-Magnetic Tension Framework: A Physical Mechanism for MOND and Early Galaxy Maturity

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KJKevin William Johnson

Key Points

  • The research aims to establish the Electro-Magnetic Tension Framework as a physical explanation for MOND and galaxy maturity.
  • Introduced the Electro-Magnetic Tension Framework using scientific registration.
  • Investigated the Lorentz Force's role in galactic dynamics and rotation curves.
  • Analyzed early galaxy maturity through observations from JWST.
  • Identified electromagnetic tension as a replacement for cold dark matter in galactic models.
  • Developed predictions for ionized gas currents toward galactic centers.
  • Explained the rapid clumping of mature galaxies observed at high redshift.

Abstract

This registration establishes scientific priority for the Electro-Magnetic Tension Framework (Johnson, Feb 2026). This framework identifies the physical "carrier" for the phenomena described by the Radial Acceleration Relation (RAR) and Modified Newtonian Dynamics (MOND). By utilizing the Lorentz Force ( times stronger than gravity) acting upon the all-inclusive sum of ionized interstellar matter (Plasma), this model accounts for: Galactic Rotation Curves: Replacing "Cold Dark Matter" placeholders with active electromagnetic tension. Early Galaxy Maturity: Explaining the "flash-clumping" of mature galaxies observed by JWST at high redshift ( ). Anisotropic Flow: Predicting "Weather Front" currents of ionized gas moving toward galactic centers. This filing serves as an immutable, timestamped record of discovery and replaces all prior unrefined nomenclature (Ref: 2/21/2026 4:36 AM PST

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Kevin William Johnson (2026) studied this question.

synapsesocial.com/papers/69b256fe96eeacc4fcec5a33https://doi.org/10.17605/osf.io/nk675
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