Changes

From Nordan Symposia
Jump to navigationJump to search
Line 454: Line 454:  
Antimatter is not a subject about black holes or dark matter, but it is a subject the Council of Equilibrium is deeply interest in resolving, as so much of it is found near the destroyed star Cassiopeia A. We ask the reader to page down to the next section to determine what else may be said about antimatter.
 
Antimatter is not a subject about black holes or dark matter, but it is a subject the Council of Equilibrium is deeply interest in resolving, as so much of it is found near the destroyed star Cassiopeia A. We ask the reader to page down to the next section to determine what else may be said about antimatter.
 
===Star Death===
 
===Star Death===
Star Death
  −
   
The death of a star is no small matter. Those huge glowing balls of sun gases never die young, but they do die eventually, and when they do they are spectacular in their demise. If a star holds matter that is essential for the universe to reclaim, Ultimatons can and do chose to rewrite structures within the star that causes it to spew antimatter.
 
The death of a star is no small matter. Those huge glowing balls of sun gases never die young, but they do die eventually, and when they do they are spectacular in their demise. If a star holds matter that is essential for the universe to reclaim, Ultimatons can and do chose to rewrite structures within the star that causes it to spew antimatter.
    
Antimatter comes about when the Ultimaton faces extinction of its own should the star favor another way of destroying the heat center of the globe of solar gasses. In this report we have often spoken of the ability of matter to transform itself when it comes under attack from extreme heat and cold. In extreme cold we have Boron and Cesium One to thank for explaining how matter can be returned to a normal diet of protons and electrons in a normal, and functioning, state of the average existence of elements necessary for universe building.
 
Antimatter comes about when the Ultimaton faces extinction of its own should the star favor another way of destroying the heat center of the globe of solar gasses. In this report we have often spoken of the ability of matter to transform itself when it comes under attack from extreme heat and cold. In extreme cold we have Boron and Cesium One to thank for explaining how matter can be returned to a normal diet of protons and electrons in a normal, and functioning, state of the average existence of elements necessary for universe building.
   −
The distance one has to travel between extreme cold and super-heat comes about when we learn that no universe in existence can overcome the heat of an exploding sun, or as they are called on Urantia, the appearance of a supernova. Let us take the case of a supernova you are familiar with that exploded so that it became visible in daylight on Urantia in the 17th century ***.
+
The distance one has to travel between extreme cold and super-heat comes about when we learn that no universe in existence can overcome the heat of an exploding sun, or as they are called on Urantia, the appearance of a supernova. Let us take the case of a supernova you are familiar with that exploded so that it became visible in daylight on Urantia in the 17th century .
 +
 
 +
[[File:17th_c_supernova300.jpg|right|frame|<center>The Remnants of Cassiopeia A today (Hubble)</center>]]
 +
 
 +
 
 +
 
 +
 
 +
The 17th century supernova (circa 1635) was from Cassiopeia A, the remnant of a massive star explosion - a supernova - that occurred about 11,000 light-years away from Earth. The light from that cosmic detonation was first visible on Earth when it arrived sometime in the 17th century
 +
 
 +
 
 +
 
 +
 
 +
 
 +
 
 +
 
 +
 
 +
 
 +
 
 +
 
    
Cassiopeia A was a class “A” star by your documentation, meaning it gave off light equivalent to about thirty-thousand lumen per square foot on Urantia. It is noted that it blew up and was seen on Urantia sometime in the 17th century as observed in various histories and commentaries of the time. This means that actual event was sometime around the beginning of the last ice age on Urantia, and was not visible until the 1630's due to the distance of 11,000 light years away. It exploded when a device within every sun was triggered which reduces the number of Ultimatons in its mantle, and when it has reduced Ultimatons in the mantle, the sun in question feeds no more than a small percent of its revivifying gases back to the heart of the sun to maintain its health.
 
Cassiopeia A was a class “A” star by your documentation, meaning it gave off light equivalent to about thirty-thousand lumen per square foot on Urantia. It is noted that it blew up and was seen on Urantia sometime in the 17th century as observed in various histories and commentaries of the time. This means that actual event was sometime around the beginning of the last ice age on Urantia, and was not visible until the 1630's due to the distance of 11,000 light years away. It exploded when a device within every sun was triggered which reduces the number of Ultimatons in its mantle, and when it has reduced Ultimatons in the mantle, the sun in question feeds no more than a small percent of its revivifying gases back to the heart of the sun to maintain its health.
Line 479: Line 495:     
Antimatter contains elements not seen in normal matter. It is not just a mirror appearance of normal matter, it also contains the seeds of universe destruction much like pulling a rip cord on a parachute should some intelligence find a way to undo matter within certain areas of space that are vulnerable to antimatter disassociation.
 
Antimatter contains elements not seen in normal matter. It is not just a mirror appearance of normal matter, it also contains the seeds of universe destruction much like pulling a rip cord on a parachute should some intelligence find a way to undo matter within certain areas of space that are vulnerable to antimatter disassociation.
 +
 
===Dark Matter===
 
===Dark Matter===
 
*Dark Matter
 
*Dark Matter

Navigation menu