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the entire Universe it was found that the time on the large<br />
scale appears to run everywhere with the same rate."<br />
Hynecek, Jaroslav 2010<br />
Light deflection by a gravitating body a hidden deception<br />
in general relativity theory / Jaroslav Hynecek.<br />
In: The General science journal =<br />
http://wbabin.net/ntham/hynecek18.pdf - 6 S.<br />
ART. LICABL. METRIK. SCHWARZSCHILD.<br />
FERMAT.<br />
S. 1: "Abstract. - In this paper it is shown that the<br />
calculation of the light deflection in the field of a gravitating<br />
body does not follow the well know Fermat principle<br />
from optics. An ad-hoc formula is typically used for calculations<br />
to obtain an agreement with observations, which<br />
does not have any correspondence to similar formulas<br />
anywhere in physics. The root cause of the problem is<br />
traced to the Schwarzschild metric, which does not<br />
describe the reality correctly. When a new metric is<br />
used the standard Fermat principle can be generalized<br />
and used leading to the results agreeing with observations<br />
and experiments."<br />
S. 6: "Conclusions. - It seems inconceivable that<br />
the problem presented in this paper is not well known<br />
to those who work in this field for their entire professional<br />
lives. We have two principles according to which to<br />
calculate the path of the photons in a gravitational field<br />
and two different metrics that describe the geometry. It<br />
is now easy to see which of these are describing the reality<br />
correctly. For the Schwarzschild metric, with its<br />
hallmark prediction of such absurdities as Black Holes,<br />
it is necessary to invent a new variational principle, not<br />
based on anything similar in physics, to find the photon<br />
trajectory and the value of the light trajectory deflection<br />
that agrees with observations. This is a clear example<br />
of fudging and "bending" the generally accepted laws<br />
of physics to force an agreement with observations and<br />
measurements. This is not how the science should be<br />
done. For the new metric the standard and well established<br />
Fermat principle from optics was generalized<br />
and the correct formula for the light trajectory deflection<br />
derived that gives the results agreeing with observations<br />
quite naturally and with a better accuracy. The only reasonable<br />
conclusion that can be drawn from this work is<br />
that the theoretical physicists are purposely covering<br />
up this problem in order to maintain the aura of "greatness<br />
and beauty" of supposedly proven General Relativity<br />
Theory. The Schwarzschild metric and consequently<br />
Einstein field equations do not correspond to reality<br />
and should be abandoned. A new theory of gravity<br />
should be developed that also agrees with the well<br />
established fundamental laws of physics."<br />
G. O. Mueller: SRT. Kap. 4-Erg.<br />
156<br />
Hynecek, Jaroslav 2010<br />
Proof of incorrectness of general relativity theory /<br />
Jaroslav Hynecek.<br />
In: The General science journal. 2010 =<br />
http://wbabin.net/physics/hynecek16.pdf - 12 S.<br />
ART. C-S. MOMENTUM. SCHWARZSCHILD. GAUSS-<br />
GESETZ. LOGIK.<br />
S. 1: "Abstract. - In this paper it is shown that the<br />
General Relativity Theory (GRT), which belongs to a<br />
class of Metric Theories of Gravity (MTG), is based on<br />
a wrong assumption, contradicts the well established<br />
laws of physics and also its own postulate. It is shown<br />
that in GRT the velocity of a massive body can exceed<br />
the speed of light and that the motion of a test body in<br />
an orbit around the centrally gravitating mass does not<br />
satisfy the conservation of angular momentum. Finally,<br />
it is shown that GR theory also violates the Gauss law.<br />
The proof rests on a comparison of the Schwarzschild<br />
metric, derived from Einstein's field equations, with a<br />
new metric from which the Schwarzschild metric can<br />
be also derived as a first order approximation but which<br />
is not derived from Einstein's field equations."<br />
S. 11-12: "Conclusions. - In this paper it has been<br />
clearly shown that GRT is only a first order approximation<br />
of reality and thus it can be concluded that<br />
Einstein field equations and their various derivatives<br />
should not be used to search for the metrics to model<br />
the strong gravitational fields, be used in various string<br />
theories, or be used in modeling of the Universe. The<br />
assumption about the Ricci tensor being zero in an<br />
empty space around the gravitating body is not correct,<br />
the zero is not a permissible value for this tensor when<br />
the centrally gravitating mass generating the field is not<br />
zero and consequently the Schwarzschild metric does<br />
not describe the reality accurately and correctly."<br />
Ibraev, Leonard Ivanovich 1991<br />
K teorii otnositelnoi absoliutnosti / L. I. Ibraev. -<br />
Ioshkar-Ola: Izd-vo Periodika 1991. 209 S.<br />
Status: Kandidat. - Quelle: COPAC.<br />
Ilyin, Vadim S. 1999<br />
The point-like dipole radiation and modification of Maxwell<br />
equations using the continuum mechanics pinciples<br />
/ Vadim S. Ilyin, Igor S. Nefedov.<br />
In: Instantaneous action at a distance in modern<br />
physics: pro and contra. Ed.: A. E. Chubykalo, N. V.<br />
Pope, R. Smirnov-Rueda. Commack, NY. 1999, S.<br />
209-222.<br />
NEWTON. FERNW. FARADAY. MAXWELL.<br />
Für den Begriff der instantanen Fernwirkung (immediate<br />
action-at-a-diatance) wird die Abkürzung IAAAD<br />
verwendet. - Newtons instantane Fernwirkung wurde<br />
Ende des 19. Jh. wegen der Ergebnisse von Faraday<br />
und Maxwell aufgegeben (S. 209): "However, some<br />
Textversion 1.2 - 2012