Cycles Physics
First published: 2004
Brief summary
CRI subject page connecting physics, frequency, mass-energy relations, simple harmonic motion and wave structure.
Article
Physics and Cycles
As with astronomy, the study of physics is so embedded with cycles that they almost pass by without being noticed. The concept of frequency is quite fundamental, being based only on time. According to one physics nobel prize winner, mass, energy and frequency are all equivalent (related by Einstein’s and Lorentz’s famous equations) and that perhaps the most fundamental of these is frequency.
In particle physics, following the work of de Broglie each particle is considered to also be a wave and to have a particular oscillation present, known as the Compton frequency of that particle. Although most often used of particles, it has been shown by passing them through two slits that larger things such as atoms also have this property.
In simpler physics, the periodicity of a simple harmonic oscillator (SHO) serves as the model for all vibrations, being a perfect sine wave of displacement over time. For all students of cycles this shows quite clearly that a cycle can be produced when a displacement from a stable state happens and there is a restoring force that is proportional to the displacement from that stable state.
Interestingly, the SHO has a sine wave over time for each of the displacement, the velocity and the acceleration. The different phases of these properties when thought about can explain the reason for the existence of the oscillations or cycles.
Additional summary
The page continues into quantum physics, cymatics, oscillons, EPR/Aspect experiments and realistic wave-structure models.
Source details and credits
- Source / publisher: Cycles Research Institute
- Source type: Webpage
- URL type: WWW
- Credits: Cycles Research Institute
- URL: https://cyclesresearchinstitute.org/subjects/cycles-physics/
