by vision-master » Wed 18 Feb 2009, 13:03:34
$this->bbcode_second_pass_quote('diemos', 'I')'ll bet you my Phd is physics it ain't.
Wait a lttle while. The Sacred Sciences of our distant past will awaken.
Classified antigravity technologies to be released$this->bbcode_second_pass_quote('', '
')

Photo: General James L. Jones, Jr., USMC (Ret.), January 19, 2009, By Michael Salla, Ph.D.,, Honolulu Exopolitics Examiner
General James L. Jones, Jr., USMC (Ret.) The first 100 days of an Obama administration promise a number of bold initiatives aiming to reinvigorate the U.S. economy and restore Americas international image. Key personnel in the Obama administration have been appointed to implement and ensure the success of such initiatives.
Among these initiatives is the anticipated release of classified technologies based on antigravity propulsion principles that can revolutionize the energy and aerospace industries. Obama's National Security Advisor, retired Marine General James Jones, will feature prominently in the releases of antigravity technologies and associated initiatives.
Classified antigravity technologies have been kept from the public realm for over six decades while secretly developed by military-corporate entities. It was revealed in 1992, for example, that the B-2 Bomber used electrostatic charges on its leading wings and exhaust.
According to aerospace experts, this was confirmation that the B-2 used electrogravitic principles based on the Biefeld-Brown Effect. The Biefeld-Brown Effect is based on the research of Thomas Townsend Brown who in 1928 gained a patent for his practical application of how high voltage electrostatic charges can reduce the weight of objects.
more........
$this->bbcode_second_pass_quote('', 'I')n order to elucidate this concept with a simple example lets have a look at a 1D-"quasicrystal" in form of a Fibonacci chain, which is a quasiperiodic sequence of short (red) and long (green) segments. We embed this 1D-"quasicrystal" in a 2D-"higher dimensional space" which in this case has the form of a simple square lattice. One unit cell of the higher-dimensional space is filled yellow. The axes show the orientation of the two orthonormal subspaces Ve, Vi. The slope of Ve with respect to the 2D-lattice has to be an irrational one. In this case it is tau=1.618... The left image demonstrates the projection method, where we have a strip of projection with finite width. All points of the 2D-lattice inside this strip are projected onto the external space Ve, thus giving the quasiperiodic sequence (red,green..). The right image shows the section method in which a hyperplane (here a 1D-line) that is parallel to Ve cuts the higher-dimensional space. The occupation domains that are attached to each of the lattice points (here: bars) intersect with the hyperplane (here: line) thus producing the same quasiperiodic sequence as in the left picture. These occupation domains (here: bars) extend parallel to the internal space Vi. We can generalize this to nD cases with n=5,6,.. In that case the internal space would be (n-3)-dimensional and the occupation domains would be two-dimensional (eg.polygons) or three-dimensional (eg. polyhedra).