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Dinosaur Dynamics in an Integrative Model for Rotating Rocks and Deformable Bodies

DOI: 10.4236/ojmip.2017.73003, PP. 35-40

Keywords: Angular Velocity, Vorticity, Eddy, Fluid Dynamics, Helix, Noncircular Orbit, Nco, Energy Balance, Density, Integrative Physiology, Dinosaur, Beam up

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Abstract:

Present long range interactions for signals, as well as large scale rare phenomena at Earthquakes are subjects of wave dynamics with large impact. Here, that will be addressed in a general (science fiction) format. The method used is based on energy balance for a continuum and kinematics of noncircular orbits, nco. Released vortex formation in a process invoking escape velocity for beamed up Dinosaurs, is modeled with fluid dynamics of a Helix. It is found that elasticity in terms of volumetric changes and vorticities interact giving large velocities and interchange of potential and kinetic energies. The model is an example of atmosphere integrative physiology.

References

[1]  Strömberg, L. and Sullivan, J.M. (2017) Concepts of Wave Amplification in Terms of Noncircular Orbits, and Its Impact on Dinosaurs’ Daily Life. Submitted to JPAR (Based on Techn. Report RG).
[2]  Hassan, A., et al. (2017) Frontiers of Chaotic Advection. Reviews of Modern Physics, 89, 025007.
https://doi.org/10.1103/RevModPhys.89.025007
[3]  Dr Christian Baumgarten, Personal Communication.
[4]  Dr Ronald Starke, Personal Communication on Ab initio Materials Physics and Microscopic Electromagnetism of Media and Dr Janusz Pudikiewicz on Vorticity and EM in Continuum Mechanics.
[5]  Strömberg, L. (2014) A Model for Non-Circular Orbits Derived from a Two-Step Linearisation of the Kepler Laws. Journal of Physics and Astronomy Research, 1, 013-014.

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