Difference between revisions of "The Black Hole"
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The action of the atomic clock is interpreted to show that time is an invariant form. The proper interpretation requires an internal reduction in the energy of matter for any velocity imposed. The law of the conservative field is applied to correct the Einstein equation for free fall. It is found that the action of contact forces is conservative as long as no radiation occurs. These facts are applied to show that the Black Hole as envisioned in the study of Cosmology has no existence in the real universe. | The action of the atomic clock is interpreted to show that time is an invariant form. The proper interpretation requires an internal reduction in the energy of matter for any velocity imposed. The law of the conservative field is applied to correct the Einstein equation for free fall. It is found that the action of contact forces is conservative as long as no radiation occurs. These facts are applied to show that the Black Hole as envisioned in the study of Cosmology has no existence in the real universe. | ||
− | [[Category:Scientific Paper]] | + | [[Category:Scientific Paper|black hole]] |
− | [[Category:Cosmology]] | + | [[Category:Cosmology|black hole]] |
Latest revision as of 19:59, 1 January 2017
Scientific Paper | |
---|---|
Title | The Black Hole |
Read in full | Link to paper |
Author(s) | Robert L Carroll |
Keywords | Cosmology, Black Hole |
Published | 1993 |
Journal | Apeiron |
Volume | 1 |
Number | 17 |
No. of pages | 3 |
Pages | 18-21 |
Read the full paper here
Abstract
The action of the atomic clock is interpreted to show that time is an invariant form. The proper interpretation requires an internal reduction in the energy of matter for any velocity imposed. The law of the conservative field is applied to correct the Einstein equation for free fall. It is found that the action of contact forces is conservative as long as no radiation occurs. These facts are applied to show that the Black Hole as envisioned in the study of Cosmology has no existence in the real universe.