THE MALTA COSMOLOGY TEMPLATE



Chapter 03 - Blackholes






PARTS

Part 0300
Blackhole
Home Page


Part 0301
Gravitonpair

Physics

Part 0302
Blackhole

Physics

Part 0303
Blackhole

Structure

Part 0304
Blackhole Mechanics


Part 0305
Blackhole Attunement


Blackhole Selfproofs



















Part 0304 - Blackhole Mechanics

ARGUMENT 0304-09

PRECEDENTS
PARAMETERS
  • Consider that when a blackhole ejects a graviton it ejects a measure of energy.
  • Consider that when a blackhole ejects a graviton it ejects a measure of mass.
  • Consider that if a blackhole ejects equatable measures of energy and mass, there is no change in the stability of the blackhole.
  • Consider that if an understable blackhole ejects proportionately more energy than mass, there is a decrease in the understability of the blackhole.
REASONING
  • When a blackhole is understable, it has an excess of energy over mass. 
  • Because it has an excess of energy over mass, its vergence velocity exceeds its escape velocity.
  • Because its vergence velocity exceeds its escape velocity, it cannot prevent gravitons escaping.
  • Because it cannot prevent gravitons escaping, there is a consequent loss of mass and energy.
  • Because it differentially loses more energy than mass, there is a decrease in the understability.
  • Because the vergence velocity exceeds escape velocity, the understability continues to decrease.
  • Because the understability continues to decrease, the measure by which vergence velocity exceeds escape velocity continues to decrease.
  • When the vergence velocity and the escape velocity are the same, gravitons no longer escape across the gravitysheath interface, mass and energy is no longer lost, and the blackhole has become stable
CONCLUSION
  • That an understable blackhole differentially ejects mass and energy until it becomes stable.  


COMMENTARY - 1

Blackholes are constantly absorbing and ejecting gravitons and, since all gravitons have the same mass but a variable measure of energy, this means the stability condition of each blackhole is constantly changing. At the gravitysheath interface of a blackhole, the escape velocity is always zero but the vergence velocity is rarely zero for long and thus a blackhole is rarely stable for long. That said, the default condition for all blackholes is to be stable and blackhole has within it the mechanism that will automatically attempt to return it to the default condition.    

COMMENTARY - 2

Stability in a blackhole doesn't mean its mass and energy measures are constant. It doesn't mean the absorption of a single graviton by a stable blackhole is necessarily followed by the ejection of a single graviton. Absorbed gravitons cross the gravitysheath interface with a variable measure of energy - perhaps a low measure or perhaps one that is extremely high. In contrast, ejected gravitons tend to have just enough energy to get them across the gravitysheath interface. Thus the absorption of one high energy graviton can result in the ejection of two or more lower energy gravitons, reestablishing the blackhole's stability at a lower mass measure.







Comments and suggestions:  peter.ed.winchester@gmail.com

Copyright 2013 Peter (Ed) Winchester



REVISIONS

10 Apr 2015 - Major revisions to layout, content, and numbering.
17 Apr 2016 - Revisions to layout and content.
25 Jan 2017 - revisions to content.

22 Apr 2017 - change teels to gravitons.