Showing posts with label E/M. Show all posts
Showing posts with label E/M. Show all posts

Monday, November 17, 2014

Lightning in space

Lightning in space.

Strong Magnetic Field Shaped Early Solar System

Thanks to readers for sending me these links.

I have described how Electricity created most of the craters on the moon.

So it only goes to show that the spinning ball of Iron and other liquid metals is an electromagnet we call the Sun. Other posts explain the logic in detail.

Gravity is a failed model. Electromagnetism through a medium describes all energy forces.

Science will come to the logical conclusion that blackholes are expressors of materials. 

Thursday, April 23, 2009

Variables Involved in Baryonic Motion

δDn= δDp+(ΔδM+ΔδE+ΔδT)

Where:

δDn = Baryonic density of object, not effected by dark matter boundaries.
where δDp Previous baryonic density of object = (δMET)/(1/2bcSin(A))
where a,b,c are the lengths of Gluons
where A,B,C are the angles between Gluons at the Quarks

δM = Magnetic field (W Boson) emitted from and read by Baryon. The W Boson is related to the rotational speed of the Baryon. In the case of uud, the 2 u quarks spin in a cone shape around the d Quark. The center of this cone is the rotational axis. The faster the spin the more intense the W Boson. The Voltage = the rotational speed.

δE = Electric field (Z Boson) emitted from and read by Baryon.
The uu rotational plane is perpendicular to the Z Boson field . The down quark lies on the rotational axis and is the direction of charge.

using Density Function Theory Introduction
ABCs of DFT
(DFT Wiki)

δT = Temperature field (Photon) emitted from and read by Leptons (Electrons) of the Baryon.
using Planck's spectral black body equations
u(v,T) = (8πhv^3/C^3)(1/e^(hv/kT)-1)
u(λ,T) = ((8πhc)/λ^5)*(1/e^(hc/λkT)-1)

This occurs during one spin of the object.
Equilibrium state:
t01 = beginning of vibrations entrance to the Dark Energy Ruleset.
where
Work state:
t11 = change period of Baryon. Application of work equations.
where δD= δDp+(ΔδM+ΔδE+ΔδT)
Equilibrium state:
t02 = beginning of vibrations entrance to the Dark Energy Ruleset.
where δD = (δMET)/(1/2bcSin(A))

Wednesday, November 26, 2008

Near and far fields

Curt Youngs: Yes! At longer wave lengths an antenna is required. Now, radiation around the antenna develops a near field at the transmitter and the receiver. This near field is a standing wave. Within the standing wave, the electric and magnetic fields are at 90 degrees. In the far field, these fields are parallel to each other, and parallel to the propagation, so it is said.

Aaron: The reason, in my model, the near and far fields must be perpendicular to each other is that they are different vibrations. The far field I have described as the W boson and the near field is the Z boson. They have two different functions.

The W boson carries information directly from Gluon to Gluon. This is the far field. This field can travel large distances. The information it carries is voltage, current and charge plus a counter. When the W boson is received by another pro-spin Gluon, it is read as magnetism.

When the W boson is read by an anti-spin Gluon, it is read as pressure. It too is magnetism but non-baryonic Dark Matter uses this information differently. Dark Matter reacts to magnetism as a pressure and is repulsed by it. This causes a bubble in the Dark Matter allowing for Baryonic Specific Density (what use to be known as gravity).

The Z boson is the near field electric component of the Gluon's transmission of information. The Z boson excites the electron. This can have two outcomes. First is the releasing of a photon wave. Second is to excite the electron with charge, current, and voltage causing the near field.

As an antenna, an electron can move from atom to atom to continue to read information from the same wavelength. The longer the wavelength the further the electron travels up the field while reading. The electron reads one entire spin of the wavelength, gathering all the information from the photon wave. This information is converted to a z boson and returned to a gluon for processing. The gluon reacts to the information by expressing pressure, heat, and charge.

(Addendum) 5/10/09 - The W+/- and Z Bosons are nearly perpendicular to each other. The spin of the Baryon causes variation in position of each field. This is an equilibrium point.

Friday, September 26, 2008

Plasma in interstellar space?

I have several issues with Dark Matter having any electrons, ionized He or not. If dark matter turns out to be only protons (ionized H), then I guess I can be ok with that. But I don't think that is what is occurring here.

I need the photon wavefront to move unimpeded from galaxy to galaxy. With the exception of gravitational lensing. but even here we don't lose photons. They are bent or in the case of the Bullet Nebula they prove Reiter's point. They are split (4 times). But we don't lose them to electrons. If the interstellar media is charged particles other than protons (He-, He3, or He4), any electrons would absorb our photons. This is why we see ionized gas when excited by photons. We don't see the original memes here. We see the interaction of the secondary information, the ion releasing a new photon wave.

I agree with almost everything in the first paper
http://www.electric-cosmos.org/electricplasma.htm

but, Pioneer 11 lost velocity while exiting the solar system.

In my model, I see solar systems like bubbles in the ocean. Bubbles can coalesce, bubbles can separate, but there is a difference between inside the bubble and outside the bubble. These are two disparate systems trying to maintain some equilibrium. Its the pressure outside the bubble pressing on the pressure inside the bubble. Solar system are not bubble shapes they are modified torus.

In the case of the solar system as a bubble, the two systems are (inside) Baryonic in nature and Non-Baryonic in nature (outside). Non-Baryonic particles (photons, free electrons, neutrinos and others) can flow between these two systems. Its the baryons that cannot leave the bubble.


Photo by enoeske on Picasa

We know that the interstellar media cannot be void.

Now for the missing matter, lets look at our friend Oort and his cloud. I think there is more matter here than previously described. Stellar Nucleosysthesis occurs here. Protons collide here and attract electrons. 3 Alphas can easily form a carbon ion. It starts sliding back towards the sun on the bent dark matter. In stellar lightning speed (a couple of million years) our carbon ion is now a small comet. This process reduces the need for Dark Matter to be heavily massive.

This above model only requires E/M and baryonic density, sprinkle some thermodynamic and others and it works. As arrogant as it sounds. I think my model is better than Newton, Einstein, and Hawkins put together (MOND). They require attraction through mass. G has never been found. I think CERN is starting to accept this.

Oh, the reason we don't find He3 on earth, at all, ever, is because of the magnetosphere. The magnetosphere forces the He3 around the earth and deposits it on the moon. Dr Schmitt of Apollo 17 found this ion in ~abundance on the moon. He3 when excited produces tremendous amounts of electricity. With no deuterium.

Thanks to Curt Youngs