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Time-Out of Time - Postscript to Nuclear Time Travel (Paperback): Bernd Schmeikal Time-Out of Time - Postscript to Nuclear Time Travel (Paperback)
Bernd Schmeikal
R1,794 Discovery Miles 17 940 Ships in 12 - 17 working days
Nuclear Time Travel and The Alien Mind (Paperback): Anton Bernd Schmeikal Nuclear Time Travel and The Alien Mind (Paperback)
Anton Bernd Schmeikal
R2,381 Discovery Miles 23 810 Ships in 12 - 17 working days

Some of the unfunded opportunities (UFOs), like the TR3B or TR6, are already flying; with this in mind, it may appear that this book is published too late. However, this is not the case. Both extraterrestrials and humans have developed craft of similar a planform. Officials and the media continuously feed the masses incorrect information. Drive technology of the honestly endeavoring human is outdated. It seems to have been copied from some ancient Indian scriptures. Indeed, electrostatic, electromagnetic and rotating plasma drives deliver fermionic power, but they are far from allowing humanity to harness the power of a hyperspace jump. In 2017, NASA ensured us that for the near future, [a] warp drive remains a dream. As a matter of fact, both human and extraterrestrial humanoids have hypothesized the use anti-gravity, warping and time travelling vehicles, even what they call living vessels. However, both have no theory, no theoretical foundations for nuclear time travel technology. This book delivers a few necessary basics concerning the possible future where this nuclear time travel could potentially become a reality.

Decay of Motion - The Anti-Physics of Space-Time (Hardcover): Bernd Schmeikal Decay of Motion - The Anti-Physics of Space-Time (Hardcover)
Bernd Schmeikal
R5,248 R4,387 Discovery Miles 43 870 Save R861 (16%) Ships in 12 - 17 working days

This book investigates a discrete theory beyond space and time of QCD-entanglement that creates space-time. Quantum entanglement is known as the most striking property of electrodynamics. It provides both a foundation for quantum information technology and a challenge for theoretical physics. Unfortunately, the equations of motion for entangled systems, quantum jumps and similar phenomena are always conceived as models in space-time. Regardless, whether we consider a quantified local oscillator, a heterodyne detection model, a Bell inequality, a CHSH-inequality, an objective pure state system, or a non-linear steering inequality, it is always formulated in space-time, using the x, x and so on. This is a doubtable method, since proceeding in this way, we are constructing space-time models of those events that bring about this very space-time, the frames', wherein they are supposed to move. Those who carry out calculations in EPR quantum-steering experiments are acquainted with the Kochen-Specker theorem. But they are still deriving the estimates for expectation values of densities and inequalities from the implicit assumption of states in Hilbert-space. Though some of us have co-operatively managed to close all the major loopholes, the locality loophole, the freedom-of-choice loophole and the detection loophole, none of us has as yet realised that a closure of the locality-loophole in strong qcd-interaction is entirely impossible. A space-like separation of hadronic events cannot be achieved. The reason for our weak models is in the lack of a suitable exact theory of interaction. Such a theory is complete and phenomenologically consistent to some extent. Theoretically, both the iterant algebra of polarised entangled strings as well as the derived geometric algebra of the known space-time is incompatible with complete space-like separation. The loophole opening up on this basis is as large and as old as that universe we pretend to know.

Primordial Space - Pointfree Space & Logic Case (Hardcover, New): Bernd Schmeikal Primordial Space - Pointfree Space & Logic Case (Hardcover, New)
Bernd Schmeikal
R4,249 R3,961 Discovery Miles 39 610 Save R288 (7%) Ships in 12 - 17 working days

In this volume of Primordial Space it is explained how unpredictable quanta of the strong and electroweak force can bring forth both a macro-space-time as we perceive it and a pattern of material phenomena with which we have been familiarized by the standard model of particle physics. However, there is a price we have to pay for this. The Heisenberg uncertainty relation discloses itself in the fancy dress of a set of irregular locations: the deadlock singularity for particle fields at rest and the topological defect structure of the boson field where the zero norm signifies a turnover of the time-like base unit into a nilpotent isotropic direction field. Time does not go without saying. But where the time-arrow is created within the strong force, there emerge anti-reflexive neighbourhoods in the multivector fields of space-time. Hyperbolic neighbourhood systems of primordial phenomena carry those waves that decompose time and energy. Primordial space helps you to look at events with a fresh mind without entirely destroying traditional physics.

Primordial Space - The Metric Case (Hardcover, New): Bernd Schmeikal Primordial Space - The Metric Case (Hardcover, New)
Bernd Schmeikal
R2,894 Discovery Miles 28 940 Ships in 12 - 17 working days

This book is a ricochet against mainstream physics. It sprang out of the idea that outer symmetries of space-time are the same as inner symmetries of matter. In other words, the standard model of physics is a space-time group. This book is about structures and phenomena that are lying hidden underneath the surface of space-time. It begins with a few biographic events, Majoranas legacy, the philosophy of Gerhard Frey and some related anthropological topics which have to do with high energy physics. It continues with a reconstruction of the theorem by Banach and Tarski in Minkowski space. We are making acquaintance with the standard model as a property of space-time. So we are challenging quite unusual actions such as penetration of quarks by a probe. We propose to apply a penetrating function D. Then, measure and basis are connected with the axiom of choice.

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