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Based on the law of conservation of energy. In any chemical or physical process, energy is neither created nor destroyed. All energy involved in a process can be accounted for as work, stored energy, or heat. The temperature of an object depends on how fast the atoms and molecules, which make up the object, can shake, or oscillate. As an object is cooled, the oscillations of its atoms and molecules slow down. For example, as water cools, the slowing oscillations of the molecules allow water to freeze into ice. In all materials, remember that a material is one that is composed of matter. A point is eventually reached at which all oscillations
are the lowest they can possibly be. The temperature, which corresponds to this point, is called absolute zero. This means that energy can not be destroyed. If the Matter placed under these conditions stopped, then it would have been destroyed. If matter were changed into nothing, then it would be destroyed. This evidence proves that energy can neither be created nor destroyed. In addition, a vacuum can be taken to absolute zero and no new oscillations observed. Evidence that energy can not be created out of Absolute Zero. Moreover, energy can not come from Absolute Zero

Based on these experiments with temperature; the results show two characteristics.  That under these conditions of extreme separation we notice oscillations of atoms and molecules and the lack of oscillations.  So, what is causing the oscillations?  Can it be broken down further?  Other methods of separating matter have been done and the results speak for themselves.  The atom itself can be broken down into the building block units.  They are the proton, neutron, and electron.  Chemistry teaches us that all elements can be broken down into these three units.  Next, experiments with radioactivity show that the neutron can break apart and form an electron and proton.  The behavior of the electron is unique.  It is considered too small in mass to be recorded in the atomic mass.  The electron moves much faster than the other two units and this high rate of movement could account for its small mass.  Also, a black hole is considered to have the mass of a Star in the volume of a fingernail.  A black hole moves incredibly fast.  Next, work in physics has been done smashing atoms.  The building block units have been smashed and the results studied.  Quarks are considered the parts that make up the proton, neutron, and electron.  These quarks are labeled based on their characteristic movement.  On film one quark might spin and complete several loops.  Experiments were repeated and the same pattern noticed.  There are at least twelve known quarks, which display similar patterns when atoms are smashed.   

What is causing the difference in the pattern of quarks? Quarks are most likely very similar to light.  Light has both a particle and wave nature.  It is called the dual nature of light.  The more light is studied as a particle the less it looks like a wave, and the more light is studied as a wave the less it looks like a particle.  Light is categorized based on its particle and wave nature in the electromagnetic spectrum.  Longer wavelengths, like radiowaves typically produce less of a particle punch.  Shorter wavelengths like x-rays usually produce more of a particle punch.  The question is can particles unite?  Radioactive experiments indicate that an electron can bond with a proton and form a new unit of matter.  Moreover, matter can unite and form something new and divide and form something new.  This is important to recognize, since the neutron has a different purpose and behavior in the atom.   

The formation of the neutron by the proton and electron is significant, because it disproves the second law of thermodynamics.  If all things in the universe are moving towards disorder, then nothing is in control.  Nothing lacks force necessary to be in control.  If nothing were in control, carbon would decay into a less ordered element.  Carbon decays into Nitrogen, which is a larger and more structured element than carbon.  The radioactive decay process is a very balanced and ordered process.  If this were not the case, then atomic masses of all the elements would constantly be changing.  Remember that the mass of an element is determined by its percent abundance on earth.  For example, carbon has three known isotopes as follows: Carbon 12, Carbon 13, and Carbon 14.  Carbon 12 is most abundant on the earth and accounts for the atomic mass of carbon to be so close to 12.  If the universe were increasing in disorder, then we would notice Carbon 13 increasing on the Earth.  Thus we would have to change the atomic mass on the periodic table to account for the percent abundance change of carbon.   

The disorder of a material is dependent upon the temperature of the material.  Thermodynamics measures the dynamics of temperature change on a material.  At what rate is the disorder of the Universe increasing?  In order to know the rate of increase, we would have to know the average temperature of the Universe and that it’s average temperature would only increase over time.  The slightest decrease in the average temperature of the Universe over time would decrease oscillations of matter and result in a decrease in the disorder of the Universe. 

The disorder of water from states of solid, liquid, and gas is dependent upon temperature.  If it is raining outside and I say that the rain is increasing, then a decrease in rain would make my statement incorrect.    Rain falling constantly indicates that the rain can increase and decrease dependent upon the temperature changes of the atmosphere and the amount of water vapor present. 

 Theories have to be explained and Laws can easily be understood.  The term INCREASING used to describe the disorder of the Universe is too vague.  It would be like me saying the Earth is flat, because my house is built on a flat lot.  Acceleration would be the proper term to describe the disorder of the Universe.  Increasing can’t mathematically be proven.  The term acceleration can mathematically be proven.  Acceleration has mathematical units assigned to it.  The term increasing is too vague for use to define a Law, and it can’t be easily understood.  If one can’t be specific as to what rate the disorder of the Universe is accelerating, then the disorder of the Universe is not increasing.

 Based on the behavior of matter at absolute zero, then disorder is constant in the Universe.  Rain can accelerate, decelerate, exhibit terminal velocity (probably in a rain forest), or be described by its speed and the direction the water is moving.  The term constant allows the scientist to choose which unit is necessary to describe the universe at a given moment.   

Can all matter be broken down into one form of energy?  It would be difficult to measure.  It would most likely have almost no mass and almost no volume and be considered nothing.  This would lead one to believe that the universe was made from nothing by something or Ex-Nihilo.  However, based on experiments with the absence of matter in a vacuum at the temperature of Absolute Zero would discredit nothing by something.  That is if we took a vacuum to absolute zero we would not expect to see matter form when the temperature was raised to room temp in the vacuum. Nothing lacks the force to dictate to something what ratios are necessary to form matter.  What comes first is in charge.  Something determines the plan and is in control.  God is dependent upon nothing or absolute zero.   Pure movement could be considered a description of God, since everything in the universe is a form of movement or the absence of movement.  However, this is only evidence of God.  God is much more powerful and awesome than this mere evidence.  I would surely insult you if; I tried to describe him.  Only Jesus has truly described him and I dedicate all that is true above to his name. 

 The second law of thermodynamics should state the following:

 "The Universe is a space time continuum" Albert Einstein.  The disorder of the Universe is constant.  The temperature of the universe can change dependent upon the matter and energy present at a given time (E=MC^2).   Which means particles larger than a photon can't travel faster than a photon.  Moreover, Einstein defined the three possible shapes of the Universe based on this principle.

The third law of thermodynamics should state the following:

 Absolute zero represents a point that all materials eventually reach at which all oscillations are the lowest they can possibly be.  Energy can’t be destroyed. A vacuum at absolute zero defines nothing as zero mass and zero volume.  A vacuum placed at absolute zero and brought back to room temp produces nothing.  Energy can’t be created from zero mass and zero volume.


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