Changes

Jump to navigation Jump to search
Line 197: Line 197:  
::::::: Andy, if you read the article, you will see that there is indeed a test of the c-decay hypothesis. It involves measuring the fine structure constant for both near and far stars, and using that to find the speed of light at those times. The speed of light has not changed, nor is there any mechanism by which it could be changed. If it were to be decaying, we should be able to detect the decay even today. George's observation about the E=mc^2 problem is also a perfectly good way to disprove c-decay; it would violate conservation of energy and that is a very serious obstacle for a hypothesis to overcome.
 
::::::: Andy, if you read the article, you will see that there is indeed a test of the c-decay hypothesis. It involves measuring the fine structure constant for both near and far stars, and using that to find the speed of light at those times. The speed of light has not changed, nor is there any mechanism by which it could be changed. If it were to be decaying, we should be able to detect the decay even today. George's observation about the E=mc^2 problem is also a perfectly good way to disprove c-decay; it would violate conservation of energy and that is a very serious obstacle for a hypothesis to overcome.
 
:::::::And Scott, you won't find any references for observed stars 39 billion light years away because no such thing exists. The universe is estimated to have a total diameter of 78 billion light years, so people have at times incorrectly surmised that we can see half of that distance away, 39 billion light years. In reality, the observable universe is approximately 13 billion light years in radius, which corresponds nicely with modern cosmology, which says that the universe is 13.7 billion years old and was opaque to radiation (i.e. light) until about 300,000 years after the Big Bang. [[User:RachelW|RachelW]] 20:54, 30 January 2012 (EST)
 
:::::::And Scott, you won't find any references for observed stars 39 billion light years away because no such thing exists. The universe is estimated to have a total diameter of 78 billion light years, so people have at times incorrectly surmised that we can see half of that distance away, 39 billion light years. In reality, the observable universe is approximately 13 billion light years in radius, which corresponds nicely with modern cosmology, which says that the universe is 13.7 billion years old and was opaque to radiation (i.e. light) until about 300,000 years after the Big Bang. [[User:RachelW|RachelW]] 20:54, 30 January 2012 (EST)
 +
::::::::None of this answers a simple question -- was an object at 39 billion lights at a closer range 2 billion lights ago in an expanding universe?  [[User:RobSmith|Rob Smith]] 20:58, 30 January 2012 (EST)
Block, Siteadmin, SkipCaptcha, Upload, Automoderated users, delete, edit, move, nsTeam2RO, nsTeam2RW, nsTeam2_talkRO, nsTeam2_talkRW, protect, rollback, Administrators, template
292,430

edits

Navigation menu