derek w Posted November 11, 2011 Posted November 11, 2011 (edited) If there is no such thing as a perfect vacuum,because there are still quantum fluctuations,of positive and negative energy(E+ E-). space can by defined as a quantum foam of energy.it has fabric.the nature of this fabric,is that if you try to pull it apart you input energy into it,which separates as matter and anti-matter,but space has an elastic quality as soon as you stop putting energy in,it snaps back together. If energy is input as electro-magnetic wave,as the wave travels through the quantum foam,the front edge of the wave is pulling the fabric apart creating virtual matter(m+) and virtual anti-matter(a-).The wave does this up to it's full amplitude,where then as the wave passes the (m+) and (a-) will be pulled back together by the elastic fabric of space,returning the energy to the wave.The wave has a constant speed related to the speed that (m+) and (a-) pull apart and snap back together.This is the speed of light. If the space that contains the (m+) side of the wave can be nudged,an equal and opposite momentum must be imparted in the (a-) side of the wave.(m+) could be in an area of space that has momentum in one direction,while (a-) is in an area of space with momentum in opposite direction.(m+) is travelling as a wave in an area of space,this area of space travels through a larger comparatively infinite space of quantum foam.The quantum foam having equal amounts of positive energy and negative energy,means(m+) and (a-) are not annihilated.(m+) and (a-) are travelling in there own bubble of space. If this happens in a multitude of areas of space,a vast number of (m+) and (a-) bubbles will be created travelling in all directions.A head on collision between (m+) and (a-) results in annihilation.But close encounters because of attractive nature of (m+) and (a-) will convert linear motion of space bubbles into angular momentum.(m+) and (a-)bubbles orbit central point. (m+) of the correct size = positron (a-) of correct size = electron up quark =5(m+) + 4(a-) down quark =5(a-) + 4(m+) electron =(A-) positron =(m+) proton =(up up down) = 14(m+) + 13(a-) = +1 anti-proton =(down down up) = 14(a-) + 13(m+) = -1 27 bubbles spinning creating a larger bubble that can have it's own independent momentum in space. hydrogen atom = proton bubble + electron(a-) which when capture within the proton bubble gains the same angular momentum as the proton bubble.hydrogen atom then has its own independent bubble that can have it's own independent momentum in space. Anti-hydrogen is anti-proton bubble(14a- 13m+) + captured positron.Again anti-hydrogen has it's own independent bubble that can have independent momentum. q = number greater than or equal to 1 but less than infinity. m+ = q x m+/q therefore a- = q x a-/q in the case of a photon the electro magnetic wave travels at speed of light inside a bubble of space that travels at the speed of light through space.Mass depends on the value of (q). therefore E = m x speed of electro-magnetic wave inside bubble c x speed of bubble through space c /sec This model differs from the standard model in that it says electrons and all negative charge particles are made of anti-matter.And positron and all positive charged particles are made of matter.And that there is an equal amount of matter and anti-matter.But it still says that there could be galaxies made of anti-atoms. thanks for reading would appreciate any feedback. Edited November 11, 2011 by derek w
derek w Posted November 12, 2011 Author Posted November 12, 2011 (edited) testing this theory in double slit experiment.Electron travels as an electro magnetic wave within an area of space that travels with its own momentum.Its as if the wave was on a treadmill.The area of space travels through both slits as a fluid would.When the bubble of space (particle) hits the detector the treadmill stops and the energy of the wave is released. If I could make my self an infinitely small observer that would not interfere with the system I was observing.I would see an electron within an area of (space that was travelling at e.g. 100m/sec) relative to the area of space that I was in.If I could catch up with the area of space that was travelling at 100m/sec,and enter it,I would be travelling with that space at 100m/sec relative to the space that I was in,however the electro magnetic wave would be travelling away from me at the speed of light.But the transition from being in an area of space that is stationary to an area of space that is moving would be gradual,the closer I get the faster the space that I am in is moving(gravity),until I am in the space that is travelling at 100m/sec.Once inside the area I can try to catch up with the electro magnetic wave,but I cannot go faster than light,So I can only match its speed and stay at what ever distance I am from it( I would then be on the treadmill). Edited November 12, 2011 by derek w
derek w Posted November 13, 2011 Author Posted November 13, 2011 (edited) (E+) = minimum value of energy fluctuation in quantum foam/2 (E-) = minimum value of energy fluctuation in quantum foam/2 Taking electron & positron as standard units:- (1m+) = (E+) x q (1a-) = (E-) x q where q is unknown quantity required to produce (1m+) or (1a-) f = frequency t(g) = time duration(gluon period) c = velocity of light v=velocity less than light k = kinetic energy produced by velocity k at c =(1m+)/2 + (1a-)/2 k at v = k at c/v energy of electron =( (1a-) x f x t(g) ) + v(of space bubble) energy of positron =( (1m+) x f x t(g) ) + v(of space bubble) a photon can be >< ( ( (1m+)/2 + (1a-)/2 ) x f x t(g) ) + (1m+)/2 + (1a-)/2 ) if photon is greater than above e.g:- ( ( (1.1m+)/2 +(1.1a-)/2 ) x f x t(g) ) + (1m+)/2 + (1a-)/2 ) then a photon has enough energy to produce electron & positron pair:- electron = ( (1a-) x f/2 x t(g) ) + c(.1m+) velocity of 30,000,000metres/sec positron = ( (1m+) x f/2 x t(g) ) + c(.1a-) velocity of 30,000,000metres/sec Edited November 13, 2011 by derek w
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