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General Relativity in the Planck Vacuum Theory

Author

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  • William C. Daywitt

Abstract

This short paper compares the classical Newton gravitational equation to the Einstein curvature tensor and shows that the two are intimately related. The calculation expands the Newton force to be more in line with the Einstein and Schwarzschild tensors.

Suggested Citation

  • William C. Daywitt, 2022. "General Relativity in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 4(4), pages 45-45, July.
  • Handle: RePEc:epw:physic:v:4:y:2022:i:4:id:11180
    DOI: 10.24018/ejphysics.2022.4.4.180
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    References listed on IDEAS

    as
    1. William C. Daywitt, 2020. "Comparing the Planck-Vacuum and Urantia-Book Depictions of the Seven-Dimensional Spacetime," European Journal of Engineering and Technology Research, European Open Science, vol. 5(12), pages 11-13, December.
    2. William C. Daywitt, 2022. "The Source of the Gravitational Constant for the Dirac Cores in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 4(3), pages 1-2, May.
    Full references (including those not matched with items on IDEAS)

    Citations

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    Cited by:

    1. William C. Daywitt, 2023. "Gravity Bodies in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 5(2), pages 26-27, March.

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    1. William C. Daywitt, 2022. "The Compton Effect in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 4(6), pages 20-21, October.
    2. William C. Daywitt, 2023. "Gravity Bodies in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 5(2), pages 26-27, March.
    3. William C. Daywitt, 2022. "Reducing the Covariant Dirac Equation for the Electron or Proton Cores to the Gradients of a Single Wavefunction," European Journal of Applied Physics, European Open Science, vol. 4(2), pages 25-27, March.
    4. William C. Daywitt, 2024. "Equation of Motion for the Electron or Proton Cores in Free Space According to the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 6(2), pages 44-45, March.
    5. William C. Daywitt, 2023. "Electron Recoil in the Compton Effect as Viewed in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 5(2), pages 28-30, March.
    6. William C. Daywitt, 2023. "The Relativistic Energy-Momentum Equation in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 5(6), pages 70-72, November.
    7. William C. Daywitt, 2021. "Nuclear Cohesion and the Spin of the Planck Particle, the Proton, the Electron and the Mesotron as Viewed in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 3(6), pages 91-93, November.
    8. William C. Daywitt, 2023. "Spin in the Dirac and Schr¨odinger Equations According to the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 5(5), pages 8-10, September.
    9. William C. Daywitt, 2023. "The Schrödinger Equation and the Time-Ordering Operator T of the Quantum Field Theory as Viewed in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 5(4), pages 7-9, July.
    10. William C. Daywitt, 2022. "The Heisenberg Uncertainty Principle in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 4(5), pages 1-3, September.
    11. William C. Daywitt, 2022. "The Source of the Gravitational Constant for the Dirac Cores in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 4(3), pages 1-2, May.
    12. William C. Daywitt, 2022. "The Cosmic Microwave Background Radiation as Viewed in the Planck Vacuum Theory," European Journal of Applied Physics, European Open Science, vol. 4(1), pages 27-28, January.

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