Monday, October 31, 2011

Graviton divides electron into two spheres

The Forces of Nature by Kelland Terry, Ph.D.
The virtual graviton particle is ejected some 10 to 20 million meters in space as discussed in a previous blog. The evidence presented suggests this string exists for a second or so, which allows it to travel this great distance and return at nearly the same velocity as a magnon.

My model suggests the virtual particle that is to become a graviton is ejected from an area between the two spheres of the electron. The electron is spinning rapidly, and I envision that the graviton becomes wrapped between the two spheres of the electron in the same manner as a fishing line on a reel. As the graviton retracts, it creates great pressure on the center of the electron, which effectively divides the electron into two spheres.

Because the graviton exists through many string cycles, the electron continually exists as two spheres. This preserves the n-goo in one sphere and s-goo in the other sphere. I will come back to the composition of the graviton in a future blog, but first I will continue to define the electron string cycle. Kelland—www.vestheory.com

Sunday, October 30, 2011

Electron string cycle cont’d

The Forces of Nature by Kelland Terry, Ph.D.
We saw in the previous blog that the electron’s n-magnons bond to the electron’s s-magnons, and then retract against the surface of the electron. As they retract, they create great internal pressure inside the electron’s two spheres. The strings that make up the electric fields contribute in a similar way.

The electron makes e-electons that give the electron its negative charge and allows it to bond to the p-electons emanating from the proton. Recently, scientists have also shown there are virtual particles surrounding the electron that are composed of both negative and positive particles bonded together. I believe the electron is making an excess number of e-electons that bond to the p-electons that also arise from the electron.

It may well be that the electron makes 2 units of e-electons and one unit of p-electons, and that one sphere of the electron creates e-electons and the other sphere p-electons, just as one sphere makes n-magnons and the other sphere makes s-magnons. It follows that one unit of e-electons becomes bound to the one unit of p-electons leaving one unit of free e-electons or one unit of charge. This unit bonds with the p-electons emanating from the proton (actually from the quarks inside the proton).

When the electron’s e-electons emanating from one sphere come in contact with an equal number of p-electons emanating from the other sphere, they bond and retract. There must be billions of these strings that bond and cover the electron like an orange peal as they retract back inside the electron. This causes great internal pressure inside the two spheres of the electron. Gravitons also have a key role to play as discussed in the next blog. Kelland—www.vestheory.com

Saturday, October 29, 2011

Electron’s elastic string cycle

The Forces of Nature by Kelland Terry, Ph.D.

There was no electricity to our farm house when I was a small child, and there was no bathroom for several years. To take a bath, Mother heated some water on our wood stove, and we took turns bathing in a number 2 (?) metal tub. Today we are absolutely dependent upon electricity, and thankfully so because I don’t even own a number 2 tub. At the heart of electricity lies the electron.

The electron is a busy little particle. It creates electric fields, magnetic fields, and gravitational fields. These fields are self inducing. The creation and retraction of the elastic strings that make up these fields continually cause new fields to form as old fields disappear. It is a cyclical process that mirrors the oscillation period of an electron. I refer to it as the electron’s string cycle.

The electron makes n-magnons that arise from the north pole of the electron and it makes an equal number of s-magnons that arise from the south pole of the electron. When they meet in space they bond and retract against the surface of the electron. They form a fabric of strings that surround the electron, and when they retract they exert great inward pressure on the electron. This also happens for the electric fields as discussed in my next blog. Kelland—www.vestheory.com

Thursday, October 27, 2011

Elastic strings meet and bond

The Forces of Nature by Kelland Terry, Ph.D.
The space about us contains a vast number of gravitons and other strings that form a dense matrix in space. We can not personally sense them because of their perfect elasticity, their almost insignificant mass, and the great distance they are shot into space. However, in a previous blog, I did explain my own experiments that show us that a spinning Ping-Pong ball is deflected by a magnetic field and continues to curve even in a vacuum. Thus, strings have a physical presence in space, they have mass. This conclusion is supported by various phenomena in our solar system, which I will go into at a later time.

Scientists have shown that magnetic fields and electric fields created by photons emanate from these particles at a 90 degree angle to the particle’s line of flight. It is reasonable that the photon’s strings are at least partially swept to the rear of the particle as it flies through a matrix of gravitons. In the same manner, the electron’s n-magnons and s-magnons are to some extent swept to the rear where they meet and bond as the electron rotates around the proton. Kelland—www.vestheory.com

Wednesday, October 26, 2011

Something about nothing

The Forces of Nature by Kelland Terry, Ph.D.
One summer when we were in grade school, my cousin and I herded a few cows on top of Dad’s mountain for our uncle. I had no shoes and the trip up and down that mountain was torture because I also sprained my ankle on the trail home. Our uncle gave us 25 cents and told us to split it. I don’t know who got the odd penny. Obviously, I must have been disappointed in our day’s earnings or I would not have remembered it. However, to be fair to our uncle, 25 cents at that time is probably equivalent to a few dollars today. I remember walking 2 miles to earn 10 cents for milking someone’s cow, and when I was in the 5th or 6th grade, they let grade school out early that spring so the kids could harvest strawberries for a local farmer. I remember picking about 14 crates of strawberries over a two day period, which netted me $7.00. When I was a little older, my cousin and I would hitchhike 20 miles to pick fruit, and then thumb home. I was fortunate in life because I never felt poor nor did I ever feel the need to accumulate money except to ease the pathway through life.

Almost everything I’ve done in life has been out of curiosity, which finally led me to elastic strings. If you are reading this blog, you must also be curious about the nature of things. Perhaps you are pondering over the following questions:

If all gravitons are presumably identical why don’t they bond and form a force of repulsion? How do electrons, photons, and quarks hold onto the gravitons when they retract? What causes the traveling wave that proceeds along all strings at great velocity? How do elastic string cycles work? The answer to the last question is key to understanding the first three questions. I will first tackle the electron’s elastic string cycle. Kelland—www.vestheory.com

Tuesday, October 25, 2011

Gravity depends on distance through object

The Forces of Nature by Kelland Terry, Ph.D.
The bucket that struck my head held tightly to Earth’s gravitons, and Earth grasped the buckets gravitons. The resistance created enabled the bucket to pull on Earth and Earth to pull on the bucket. The force of attraction between bucket and Earth was shared equally by these two bodies.

The resistance created when a graviton retracts is key to understanding the force a graviton can exert when it pulls on some object. Resistance is due to two factors: the density of the object and distance through an object. This explains why a graviton from Earth retracting through the Sun creates 27.1 times more force than a graviton from the Sun retracting through Earth. The density of the Earth is greater than the density of the Sun; however, the average distance through the Sun is much greater than the average distance through Earth, which makes up for Earth’s greater density.

The force of attraction between Earth and Sun is shared equally between these two bodies. The number of gravitons from the Sun that penetrate Earth is much greater than the number of Earth’s gravitons that penetrate the Sun. However, each graviton from Earth creates 27.1 times the retraction force. Thus:

The number of Earth’s gravitons striking the Sun times the Sun’s density times the distance through the Sun is exactly equal to the number of the Sun’s gravitons striking Earth, times the density of Earth, times the distance through Earth. That’s a mouth full, isn’t it? Kelland—www.vestheory.com

Monday, October 24, 2011

Resistance to graviton retraction

The Forces of Nature by Kelland Terry, Ph.D.
I clearly remember helping my older brother add soil to the top of our outhouse to ward off the rain. He took the high position on top of the outhouse and I filled the bucket with dirt that he would pull up with a rope. He managed to drop the bucket on top of my head, which left a gash in my noggin and blood running down my face. This was in the 1930’s, and at that time, I had never seen the inside of a bathroom. And there wasn’t much in the way of toilet paper either. We probably used the pages from an old copy of a Sears and Roebuck catalogue.

The bucket had to hold onto Earth’s gravitons in some manner, otherwise there would be no way for Earth to pull on the bucket. The question is: How did the bucket grab hold of the gravitons emanating from Earth? There are four parts to this puzzle.

1. The graviton string has tiny waves that begin at the source of the string and proceed along its length at great velocity. It can be shown mathematically that these waves likely travel along the string at almost the same velocity as the virtual graviton particle. By the time the virtual graviton particle reaches 10 to 20 million light years in space, the first wave arrives with it. I will in a future blog go into these waves in detail, for the moment please bear with me.

2. The graviton wave has physical properties, it is composed of mass. When it passes near an electron, photon, or quark it is trapped by the particle’s strings as it is going through its string cycle. This allows the graviton to exert a pulling force when it begins retraction because the string’s waves become stuck in the particle’s strings.

3. The string is quickly released when the electron, photon, or quark completes its string cycle.

4. The graviton can no longer transmit traveling waves after it begins retracting because its properties change throughout its length. This means there is no way for electrons, photons, and quarks to grab hold of the string because there are no physical nodules to hold onto.

Consider the attraction between Earth and Sun. When a graviton from the Sun passes through Earth, any portion of this string beyond Earth has no influence on the force of attraction between these two bodies because this portion of the string quickly loses its ability to transmit waves as it retracts, and without waves there is no resistance. Kelland—www.vestheory.com