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About Nano Fusion and Dynamic Fusion

DOI: 10.3844/ajassp.2016.261.266, PP. 261-266

Subject Areas: Biotechnology, Dynamical System, Atomic Physics, Nuclear Physics, Nuclear Chemistry, Industrial Engineering, Structural Material, Electric Engineering, Nuclear Engineering, Nanometer Materials, Particle Physics

Keywords: Nanoparticles, Fusion, Cold Fusion, Dynamic Cold F usion, Moving Particle, Adjacent Particles, Moving Particl e Radius, Potential Energy, Accelerated Particles Speed

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Abstract

Hot fusion is currently a difficult goal to accomplish due to the high temperatures required, which are difficult to achieve and also to be maintained. For these reason, it is much easier to try to achieve cold fusion, or a combined method. In this paper, the author will briefly present some original relationships for setting up a theoretical model for cold fusion. It will be determined the radius of a moving elementary particle and will be calculated the potential energy of the two adjacent particles. In addition, the necessary speed of the accelerated particles when they will collide to start cold fusion will be determined. The radius of an electron or a nucleus at rest is close to nano sizes. Because of this, static, the fusion working with nanoparticles. It was evaluated that dynamic nanoparticles dimensions are much smaller than when they are at rest.

Cite this paper

Calautit, F. I. T. P. A. J. K. (2016). About Nano Fusion and Dynamic Fusion. American Journal of Applied Sciences, e525. doi: http://dx.doi.org/10.3844/ajassp.2016.261.266.

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