Conversion of Waves Under Different Gravitational Field Intensity Area

Authors

  • Sankar Palchoudhury ‎ Independent Researcher, Retd. W. B. S. Govt. Employee, 101/673/A, College Para, P.O. Kharia, Ward No. 21, Dist. Jalpaiguri, ‎Pin Code -735101, West Bengal, India‎

DOI:

https://doi.org/10.14331/ijfps.2023.330157

Keywords:

Gravity, Black holes, Gravitational singularity ‎

Abstract

Natural disturbances in the gravitational field cause light, infrared, x-ray, and other waves. We define a complete wave as having two parts: a crest and a trough. A complete wave represents a single frequency. Every wave is initially powered at the source along with its wavelength and amplitude, which all vary with the gravitational field intensity in subsequent steps. A/λ has a significant impact on the wave's power. A gravitational wave is a converted wave, because of its changing power due to the changing intensity of the gravitational field.

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Author Biography

Sankar Palchoudhury ‎, Independent Researcher, Retd. W. B. S. Govt. Employee, 101/673/A, College Para, P.O. Kharia, Ward No. 21, Dist. Jalpaiguri, ‎Pin Code -735101, West Bengal, India‎

References

Odenwald, S. F. (2019). Black Hole Math NASA. Retrieved ‎from The National Aeronautics and Space Administration ‎website: ‎https://www.nasa.gov/sites/default/files/atoms/files/black_‎hole_math.pdf

Palchoudhury, S. (2020a). Gravitational Field Intensity and ‎Shifting of Waves. In Vol. 10. (pp. 55-57). ‎doi:https://doi.org/10.14331/ijfps.2020.330142‎

Palchoudhury, S. (2020b). The Wave Nature Phenomena ‎and the Gravitational Field. In (Vol. 3, pp. 1): International ‎Journal of Fundamental Physical Sciences.‎

Palchoudhury, S. (2021). About Black Holes. 11(1), 6-8. ‎doi:https://doi.org/10.14331/ijfps.2021.330144‎

Williams, D. R. (2022). Sun Fact Sheet‎. ‎https://nssdc.gsfc.nasa.gov/planetary/factsheet/sunfact.html

Williams, D. R. (2023). Planetary Fact Sheet - Metric. ‎https://nssdc.gsfc.nasa.gov/planetary/factsheet/‎

Published

15-03-2023

How to Cite

1.
Palchoudhury ‎ S. Conversion of Waves Under Different Gravitational Field Intensity Area. Int. J. Fundam. Phys. Sci [Internet]. 2023 Mar. 15 [cited 2025 Jan. 31];13(1):5-9. Available from: https://www.fundamentaljournals.org/index.php/ijfps/article/view/189

Issue

Section

ORIGINAL ARTICLES

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