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In the quantum vacuum there are lots of transient acceleration vectors of mean magnitude a randomly oriented. The vectors going with the frame appear diminished, if the vacuum is viewed from an frame, and the vectors going against the frame appear improved, resulting in a net polarization of the vacuum. If the frame's acceleration g is small, the effect is linear, and if the machine is filled up with vectors the coefficient of the polarization is going to be unity. The conventional exponential expression for controlling high-energy changes must also be reproduced. Hence the vacuum polarization is h exp (g/a). The terms of the exponent when multiplied by the dipole moment have the dimensions of energy.

The rest frame of the galaxy, as an example, is accelerated with respect to local inertial frames that fall under the guts. In this rest frame the machine seems polarized and improves the galaxy's gravitational field g. So we've

g= -GM/r2 + g exp (g/a)

where g is understood to be negative. For g much higher than a, the exponential is negligible and Newton's law effects. But for g less than a, the exponential could be expanded to at least one + g/a and we get

g2 = aGM/r2

This really is exactly the method found empirically by Milgrom to explain the motion of stars and galaxies in the weak-field area, except the law of gravity is changed, maybe not the law of motion (Scientific American, August 2002). He sees that a is about one Angstrom per second squared, which can be close to the "surface gravity" of an, the field of a mass at one meter, or the field of a galaxy in its outer parts. Also, the square of a is not far from the worth of the cosmological constant, in units where c=1. In the saturated field strength of the quantum vacuum this type, a might be viewed.

The observations can be adequately explained by using the appropriate quantum law of gravity and assuming a probable amount of ordinary matter M. There's number need for dark matter.

The resulting clear polarization could enhance the acceleration, and indeed may cause the acceleration, once the process has started, due perhaps to some interference sometime ago, as house accelerates far from us. If space is collapsing in certain distant region, exactly the same process would boost the failure. Therefore the cosmos may contain spread parts of growth and collapse. When extension becomes intense, a big bang would result as virtual particles are ripped out of the vacuum. A crumbling place could produce a big crunch, where matter is crushed back in the vacuum. The whole process is presumably infinite and eternal. [ Travis-Online.Com Birthday Project 2010]

As I see it

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