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Einsteins gravitational equivalence principle does not hold.


McMahon, Casey Ray


Research Papers





Date Published:

October 03, 2015




Gravity, Einstein, general relativity, gravitational equivalence model, gravitational, equivalence, McMahon


A simple test is presented in this paper, to distinguish between the difference between acceleration due to gravity and acceleration due to a moving reference frame. Thus, Einsteins gravitational equivalence model does not hold. A second test, which is theoretical and based on McMahon field theory, is presented later in the paper.


Mohammad Khan(Chicago, United States):
Acceleration does not cause time dilation as shown by particle accelerators. So acceleration by gravity also does not produce time dilation. This is the key to understanding gravity.
You are right as shown in your article that acceleration is not exactly like acceleration in gravity

Posted: August 07, 2015 @ 12:02:17 am
Patrick Collins:
Many thanks for this!
I've long thought exactly the same: a gravitational field and a mechanical acceleration field are always physically entirely different due to the inescapable gradient in a gravitational field.
The "equivalence" proposal is merely a mathematical fiction.
It's very sad that mainstream physicists have been teaching this nonsense for nearly a century!

Posted: April 25, 2015 @ 1:31:07 am

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