A Short Communication on Progress and Problems of ITER Fusion Project

Authors

  • Victor Christianto Malang Institute of Agriculture, Indonesia. Halton Arp Institute, affiliated to International Mariinskaya Academy, St. Petersburg
  • Florentin Smarandache Dept. Mathematics & Sciences, University of New Mexico, Gallup, USA.

DOI:

https://doi.org/10.48165/

Keywords:

ITER Fusion project, Hydrogen-based economy

Abstract

 In recent years, it becomes clear that ITER project in France, as one of the largest  experimental fusion reactors underway, is far away from achieving net energy  production. In this review article, we presented a short communication this week with  Robert Neil Boyd, a senior physicist who happens to have his own working design of  fusion reactor in the past. We hope that this transcript of our communication with him  (as per 15-17th Nov. 2021) may be found useful for younger scientists.

References

W. Wayt Gibbs (2016). Fusion underground, Scientific American.

D. Kauffman (2017). The uncertain future of fusion energy, http://energypost.eu/the-uncertain-future of-fusion-energy.

T. Linden (2015). CERN Colloquium 26th of March 2015.

New Energy Times (2017). Eurofusions role in the ITER power deception.

http://news.newenergytimes.net/2017/11/ 07/eurofusions-role-in-

S. Krivitt (2017.) The ITER 500 megawatt power amplification myth url:http://news.newenergytimes.net/2017/ 10/06/the-iter-power- amplification- myth/

R.D. Hazeltine J.D. Meiss (1992). Plasma confinement Basic Books, USA.

V. Christianto, Y. Umniyati, V. Krasnoholovets (2017). On plausible role of classical electromagnetic theory and submicroscopic physics to under- stand and enhance low energy nuclear reaction: A preliminary review. Journal of Condensed Matter Nuclear Science, 2017, 22, pp. 27–34. http://www.iscmns.org

T. Mizuno (2000). Experimental Confirmation of the Nuclear Reaction at Low Energy Caused by Electrolysis in the Electrolyte. Proceedings for the Symposium on Advanced Research in Energy Technology 2000, Hokkaido University, March 15, 16 and 17, 2000, pp. 95-106.

Ph. M. Kanarev (2001). Water as a new energy source. Weinfelden 2001 Lecture. New hydrogen technologies and space drive, June 2001.

Ph. M. Kanarev & T. Mizuno (2002). Cold fusion by plasma electrolysis of water. Published 20-12-2002. url: https://www.researchgate.net/publication /237276063_COLD_FUSION_B

Y_PLASMA_ELECTROLYSIS_OF_WATER [12] Robert N. Boyd & F. Smarandache (2022). Remark on Project Greenglow and Rodin coil: Letter to Editor. J. Cosmology, Filaments and Astrobiology Vol. 1 Issue 2, July 2022. [13] Fritjof Capra (2009). Hidden connections. Kata pengantar: Husain Heriyanto. Cet. III. Yogyakarta: Penerbit Jalasutra.

Edward de Bono (2018). Conflicts: a better way to resolve them. London: Vermilion. [15]Mark Z. Jacobson (2020). 100 percent Clean, Renewable Energy and Storage for Everything 1st ed. Cambridge: Cambridge University Press. (Note: online course at Stanford Univ. Based on this book: CEE 176B/276B.) url: https://web.stanford.edu/group/efmh/jac obson/WWSBook/WWSBook.html

Published

2022-12-15

How to Cite

A Short Communication on Progress and Problems of ITER Fusion Project . (2022). Bulletin of Pure and Applied Sciences – Physics, 41(2), 111–115. https://doi.org/10.48165/