Showing posts with label planet tilt. Show all posts
Showing posts with label planet tilt. Show all posts

Monday, December 19, 2011

Our solar system in review

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

I have in this section shown how elastic string theory can be used to explain common observations in our solar system. Gravitons have their effect because of three important features:
• They have physical properties; i.e., they have mass.
• They remain bound to the particles that create them.
• Finally, there is a vast concentration of gravitons emanating from central bodies, such as our Sun.

These features lead to the following conclusions:
• Gravitons couple the spin of a planet to its orbital motion about the Sun. Earth spins in the same direction it orbits as it collides and spins against the Sun’s gravitons in its path. Venus has the slowest spin rate of all the planets because Venus spins in the opposite direction that it rotates. Venus is slowly being forced to spin in the opposite direction.
• Gravitons physically connect satellites to central bodies. Because Earth spins on its axis, it drags the Moon forward much like a gyrating human body drags a hula hoop. This physically transfers Earth’s momentum to the Moon in the same manner that the human body transfers its energy to the hula hoop. The Moon is moving away from us as it gains momentum and Earth’s days grow correspondingly longer. Triton rotates around Neptune in the opposite direction that Neptune spins. Triton is being forced to migrate inward towards Neptune at a noticeable rate.
• A dense matrix of gravitons causes repulsion forces between Sun and planet. Repulsion is dependent upon graviton concentration and the angles taken by an orbiting planet. Repulsion decreases faster than gravitational attraction as the distance between two bodies increase because both of these factors decrease with distance.
• Because the ratio of repulsion force versus force of attraction decreases with distance from Sun, it completely explains Mercury’s precession thought due to relativity.
• The interaction of repulsion forces and the force of gravitation coupled with the planet’s equatorial bulge causes Earth and other planets to tilt on their axes.
• Because the ratio of repulsion force to the force of attraction decreases faster with distance from the Sun, it causes tilt to increase with distance, and it explains Earth’s annual (actually semiannual) polar wobble on axis.
Kelland—www.vestheory.com

Friday, December 16, 2011

Tilting planets

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

For those planets with a tilt of 23 degrees or more, we find the following relationships:

• Planet tilt is dependent upon an equatorial bulge that gives the planet a unique orientation in space.
• Planet tilt is dependent upon the dynamic relationship between the forces of attraction and repulsion acting on the planet. The force of attraction favors tilt and the force of repulsion favors no tilt.
• Planet tilt increases with distance from the Sun because repulsion forces decrease faster than the force of attraction as we move away from the Sun.

I will examine those planets with little or no tilt in my next blog. Till then be safe and in good health. Kelland—www.vestheory.com

Thursday, December 15, 2011

Repulsion forces favor no tilt

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

In the previous blog, I explained that the force of attraction favors tilt. Repulsion forces have the opposite effect.



There would be less repulsion force pushing Earth away from the Sun if its equatorial bulge was directed towards the Sun. Repulsion forces are attempting to move Earth’s axis to a vertical position with no tilt. Kelland—www.vestheory.com

Wednesday, December 14, 2011

Equatorial bulge and tilt

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

Earth’s gravitons retracting back to source are trying their best to make Earth into a perfectly round sphere; however, the tug between Earth and Sun caused the planet to bulge along its equator directly towards the Sun. Since Earth’s equatorial bulge is no longer directed at the Sun, it seems likely that the bulge came first, then tilt. This idea fits my model for tilt.

The equatorial bulge gives the planet a unique configuration that allows the Sun’s gravitons to interact with the planet in a very special way. In the following diagram for aphelion, Earth is moving away from the viewer and the planet is spinning counterclockwise on its axis.



There is a gradient along the axis. At the upper side, the force of attraction favors tilt, while gravitons pulling on the bottom of the planet are attempting to reverse tilt; however, overall the force of attraction favors tilt.

The force of attraction favors tilt at aphelion and perihelion, which the reader can verify by making a drawing for Earth’s position at perihelion.

The opposite is true for repulsion forces, which I will analyze in my next blog. Till then be safe and in good health. Kelland—www.vestheory.com

Tuesday, December 13, 2011

Repulsion & attraction forces

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

In this blog I will be content just to review why the force of repulsion attempting to push a planet away from the Sun decreases faster than the force of attraction as the distance between planet and Sun increases.
• The gravitational force of attraction between planet and Sun decreases with distance because fewer gravitons make connections.
• Repulsion forces against a given planet are dependent upon two factors and both decrease with distance from the Sun:
1. The concentration of the Sun’s gravitons per unit area.
2. The angles negotiated by the planet as it proceeds along its elliptical orbit become less as the distance from the Sun increases.

The net result is that the force of repulsion decreases faster than the force of attraction as the distance between planet and Sun increases.

Kelland—www.vestheory.com