Quantum energy distribution: a classical interpretation

Einstein was often quoted as saying “If a new theory was not based on a physical image simple enough for a child to understand, it was probably worthless.” For example one can easily understand how the curvature in space-time can be the causality of gravitational forces in terms of the physical image of a marble … Read more

Finding the graviton

One of the biggest problems in theoretical cosmology is understanding why we have been unable to observe the Graviton or the quantum of gravitational force.  Some have attributed this to the fact that its interaction with matter is not strong enough to be detected by modern instrumentation. However the reason may be because gravity is … Read more

Finally, someone found a physical link between the graviton and the photon

Presently the Standard Model of Particle Physics links the quantum properties of the Gravitron with electromagnetism through mathematics  However, for the past 50 years brightest minds in the scientist community have been unable to observe the Gravitron or the particle it assumes it responsible for the force of gravity. Some say this is because it … Read more

Why we cannot see 25% percent of the universe mass

Scientists have determined that roughly 70% of the Universe is dark energy while Dark matter makes up about 25%. The normal matter or everything ever observed with all of our instruments adds up to less than 5% of the Universe.  The evidence for the existence of Dark matter comes from the detained analysis of the … Read more

Quantum entanglement: A Classical non-locality

Quantum entanglement is the name that describes the way that particles can share information and interact with each other regardless of how far apart they are. For example an electron in certain atoms will spontaneously decay after being excited by emitting pairs of polarized photons such that one is aligned horizontally the other vertically.  According … Read more