Should we allow math to define our existence or have it define our math?

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Einstein’s Explanation of the Unexplainable

All of our modern sciences take their names from ancient Greek. In the case of physics, that word is “physik” which translates to “knowledge of nature and is dedicated to understanding how and why “our world” behaves the way it does.

Proponents of this definition like Einstein focused on developing mathematical theories which not only quantified how gravity works in terms of a curvature in space-time but why it does terms of how objects in “our world” follow a curvature surface. Putting it another way they gave us the ability NOT ONLY to mathematical quantify “our world” but understand WHY and HOW one made up of space-time behaves the way it does.

However, there is another definition of physics that assumes it should ONLY have to quantify what we observe and therefore we should NOT attempt to understand how and why it exists

Proponents of this definition have developed a system of mathematics called quantum mechanics which ONLY quantifies what we observe. However, it DOES NOT follow the rules that define the behavior of “our world” because it assumes it exists in several superpositioned states at the same time which reduced to one when they are observed. Putting in another way they believe science should only be concerned with defining best way to quantifying observations and not about why or how they come about.

However, we believe the ancient Greeks would disagree because as was mentioned earlier they defined a physicist as someone who was dedicated to NOT only quantifying “our world” but understanding how and why it behaves the way it does. Therefore, they MAY not have felt comfortable in calling Quantum mechanics a valid theory of “our world” or its proponents physicists because they do not attempt to understand why it behave the way it does.

Even so there are some proponents of quantum mechanics who have suggested that because, to this date its system of math is only one that can accurately quantify the quantization of energy in “our world” it MUST be product of that mathematical structure

However, because most if not all of the constants in the equations used to define its mathematical structure are derived from “our world” it is difficult to determine if it is a product of its mathematical structure or if that structure is a product of it

But the math of quantum mechanics may not be the only one that can define how and why we observe what we do in “our world”

For example, one can use mathematics to determine why we observe 4 apples on a table by assuming that originally there were two on the it and two were added or there were six and two were taken away but only one of those equations define how and why they actually got there.

Putting it another way there are in most case many ways to quantify both the number of apples on a table and what we observe in “our world”.

This suggests there MAY be able to find another mathematical system other than the one provided for by quantum mechanics that can define why energy is quantize base on how it behaves in “our world”.

For example, in “our world” observations, the science of wave mechanics and Relativity tells us an electromagnetic wave moves continuously through space-time unless it is prevented from moving through time by someone or something interacting with it. This would result in it being confined to three-dimensional space. The science of wave mechanics also tells us the three-dimensional “walls” of this confinement will result in its energy being reflected back on itself thereby creating a resonant or standing wave in three-dimensional space. This would cause the energy of an electromagnetic wave to be concentrated at the point in space were a particle would be found. Additionally, wave mechanics also tells us the energy of a resonant system such as a standing wave can only take on the discrete or quantized values associated with its fundamental or a harmonic of its fundamental frequency that the wave function associates with a particle.

Putting it another way when an electromagnetic wave is prevented from moving through space time either by being observed or encountering an object it is reduced or “Collapses” to a form a standing wave that would define the quantized energy quantum mechanics associates with a particle.

As was mentioned earlier there are in most cases many ways to mathematically quantify both the number of apples on a table and what we observe in “our world”. Therefore, we should not assume the solutions provided by quantum mechanics are the only ones that will make accurate predictions of its behavior.

What we as physicists and mathematicians MUST decide is should we allow math to define our existence or have existence define our math because it is possible a new system of math based on the behavior of “our world” could open doors to new technologies that will enable our civilization to advance beyond were one based on quantum mechanics can.

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