American Journal of Modern Physics

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Developing an Equation to Compute the Wavelength (λg) and Quantized Energy (Eg) of Elusive Graviton

Received: 01 October 2013    Accepted:     Published: 10 November 2013
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Abstract

Graviton, the carrier of gravitational force, has remained as ever elusive to the physicists till today. But the graviton has a relation with theεT, the quantized energy of thought-carrying particle. This εT can be correlated with the Planck system of units like Ep (Planck energy), mp (Planck mass), λp (Planck length) andτp (Planck time). The same εT can also be correlated with the wavelength (λg) as well as the quantized energy (Eg)of the graviton liberated from a body of mass m.

DOI 10.11648/j.ajmp.20130206.19
Published in American Journal of Modern Physics (Volume 2, Issue 6, November 2013)
Page(s) 330-333
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Cosmic Microwave Background Radiation (CMBR), Universal Mind (UM), Though-Carrying Particle (TCP), Thought Retaining Particle (TRP), Quantized Energy (εT) of TCP, Gravitational Force (GF), Thought Force (TF), Planck Mass(mp), Planck Energy (Ep), Planck Length (λp), Planck Time (τp)

References
[1] G. Gamow, The Great Expansion, The World of Physics, (Simon and Schuster, 1230 Avenue of Americas, New York 10020, New York 10020) 3:271 (1987)
[2] D. Pal, and A.U. De, The cosmic microwave background radiation temperature signifying the existence of the thought-carrying particle, thought retaining particle and thought force. NeuroQuantology 10: Issue3; 428-442 (September 2012)
[3] K. S. Thorne. The Search for Black Hole, The World of Physics, (Simon and Schuster, 1230 Avenue of Americas, New York 10020) 3: 524 (1987)
[4] H. Bethe, The Energy of the Star. The World of Physics. (Simon and Schuster. 1230 Avenue of Americas, New York 10020), 3: 402-404 (1987)
[5] S. K. Dutta, The Noninfinite, Nonzero Quantized Energy Limits and Their Physical Significance. Physics Essays. 8, number 4 469 (1995)
[6] C. Rovelli, "Ashtekar's formulation of general relativity and loopspace non-perturbative quantum gravity: a report", in class and QuN.Grav., 8: 1613 to 1675 (1991)
[7] V. F. Weisskopf, The Origin of the Universe. The World of Physics, (Simon and Schuster, 1230 Avenue of Americas, New York 10020) 3: 10 (1987)
Author Information
  • Pharmacy College, Bengal School of Technology, Sugandha-Delhi Road, Chuchura, Dist.-Hooghly, West Bengal, INDIA

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  • APA Style

    Dhananjay Pal. (2013). Developing an Equation to Compute the Wavelength (λg) and Quantized Energy (Eg) of Elusive Graviton. American Journal of Modern Physics, 2(6), 330-333. https://doi.org/10.11648/j.ajmp.20130206.19

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    ACS Style

    Dhananjay Pal. Developing an Equation to Compute the Wavelength (λg) and Quantized Energy (Eg) of Elusive Graviton. Am. J. Mod. Phys. 2013, 2(6), 330-333. doi: 10.11648/j.ajmp.20130206.19

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    AMA Style

    Dhananjay Pal. Developing an Equation to Compute the Wavelength (λg) and Quantized Energy (Eg) of Elusive Graviton. Am J Mod Phys. 2013;2(6):330-333. doi: 10.11648/j.ajmp.20130206.19

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  • @article{10.11648/j.ajmp.20130206.19,
      author = {Dhananjay Pal},
      title = {Developing an Equation to Compute the Wavelength (λg) and Quantized Energy (Eg) of Elusive Graviton},
      journal = {American Journal of Modern Physics},
      volume = {2},
      number = {6},
      pages = {330-333},
      doi = {10.11648/j.ajmp.20130206.19},
      url = {https://doi.org/10.11648/j.ajmp.20130206.19},
      eprint = {https://download.sciencepg.com/pdf/10.11648.j.ajmp.20130206.19},
      abstract = {Graviton, the carrier of gravitational force, has remained as ever elusive to the physicists till today. But the graviton has a relation with theεT, the quantized energy of thought-carrying particle.  This εT can be correlated with the Planck system of units like Ep (Planck energy), mp (Planck mass), λp (Planck length) andτp (Planck time). The same εT can also be correlated with the wavelength (λg) as well as the quantized energy (Eg)of the graviton liberated from a body of mass m.},
     year = {2013}
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