Wednesday, July 18, 2012

Mercury gives boost to dynamic decay theory

http://creation.com/mercury-magnetized-crust

 

 

Russell Humphreys dynamic decay theory of planetary magnetic fields has gotten yet another boost from the planet Mercury.  This Young Earth Creation theory had two major predictions about what  NASA’s Messenger spacecraft would find on mercury.

 

  1. That high rate of decay in Mercury’s Magnetic field, it has decayed 8% since 1975.
  2. That Mercury’s crust would have a residual magnetic field resulting from a stronger higher magnetic field in the past.

 

The results in both cases are consistent with dynamic decay theory

 

 

------ Charles Creager Jr.

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Monday, July 16, 2012

The Higgs field and the info-verse.

 

For those of you who may be unfamiliar with what I mean by info-verse. Len me do a brief recap.

 

The term info-verse is short of information universe and it is a unification theory I have working on. It is a special interpretation of Dr. Robert Herrmann’s General Intelligent Design that postulates that our reality at it most fundamental level an information system that forms a virtual reality for conscience being such as humans to experience and live in.

 

I was a little slow in raising the issue of the Higgs Boson and the Higgs field because I did not have enough knowledge of the concept to see how it fit into the info-verse model. I now have that information.

 

One aspect of the info-verse model is that plunk length and plunk time are the smallest units of space and time. Now by definition the speed of light is 1 plunk length / plunk time. That means that for a particle to travel faster than light it actually has to skip of over some space. It also means that for a particle to travel slower than light it would have to stay in the same plunk length for more than one plunk time. One peace of the puzzle was that the number plunk times a particle would stay in one plunk length would not be constant at most velocities and I had no regulating  

agent to control this. The Higgs field turns out to be that controlling agent.

 

 

------ Charles Creager Jr.

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Thursday, July 5, 2012

Condensed Matter Physics



Condensed matter physics is the area of physics dealing with condensed phases of matter and their physical properties.  Condensed phases of matter include common one like liquids and solids as well as more exotic ones like superconductors and superfluids. The goal of condensed matter physics is to understand how condensed phases of matter behave.

The most commonly known types of condensed matter are liquids and solids. While there are other types of condensed matter are they tend to be a form of liquid or solid. In fact many of these types of condensed matter are not exclusive and object can some time exist in more than one of these states at the same time.

Condensed matter physics is basically the physics of liquids and solids. It studies the properties of different types of liquids and solids and the transitions that occur between them.  As simple as this sounds it produces a lot of interesting results and technologies. In fact many of the parts of the computer you are reading this one of their origins in Condensed matter physics

Friday, June 22, 2012

Amazingly Close Planets Found orbiting Kepler-36

Amazingly Close Planets Found orbiting Kepler-36

Two planets recently discovered by the Kepler Space Telescope orbiting the star Kepler-36 come as close as 1.2 million miles every 97 days. One is a so called "super-Earth" and the other is a gaseous planet about the size of Neptune orbit this a 1,200 light-years from Earth. They are closer than any other known planets making make them visible to each other as disks instead of stars with Kepler-36c appearing Kepler-36b’s sky in 2.5 times the size as our moon as seen from Earth.

The two planets are about 30 times closer than any planets our solar system yet one has a density similar to Earth and the other has a density similar to that of Saturn. This is yet another failure of naturalistic planet formation theories and will likely force a reworking of both planet formation and migration theories.

Monday, June 18, 2012

Shenzhou 9  Docks to Tiangong-1 Spacelab

Shenzhou 9  Docks to Tiangong-1 Spacelab
China's  Shenzhou 9 spacecraft docked with the Tiangong-1 today in their docking of a manned spacecraft. The three Chinese astronauts launched onboard the Shenzhou 9 spacecraft  entered Tiangong-1 this afternoon.

Mitochondrial Eve

It is commonly claimed that Mitochondrial Eve lived 100,000 - 200,000 years ago but hat claim is based on a mutation rate that assumes we had a common ancetor with chimps 5 million years ago but direct mesurments of the mutation rate produces a date fo around 10,000 years,

Sunday, June 17, 2012

On Classical Mechanics



Mechanics is the branch of physics that deals with the behavior of physical objects that are subjected to forces or displacements. Classical Mechanics is the field of mechanics dealing with the physical laws that describe the motion of bodies under the action of a system of forces at every day sizes and velocities. Together thiso types of mechanics form the bases of physics.
Classical mechanics is limited in terms of the sizes and speeds at which it is applicable. The is because when the size of the objects gets extremely small quantum mechanics comes into play but on the macroscopic level quantum mechanics produces essentially the same results as classical mechanics. Further more when the speed of the objects gets extremely fast; that is approaching the speed of light relativistic mechanics comes into play while at the speed experienced in every day life relativistic mechanics produces essentially the same results as classical mechanics. Furthermore at larger scales of size and distance celestial mechanics come into play however this is actually just an expansion of the principles of classical mechanics to larger scales.
Classical Mechanics has an ancient history since the science goes back at least as far as ancient Greece with Greek philosophers like Aristotle. In practice the principles of classical mechanics go back much further even though they were not yet formulated. Classical Mechanics became a full fledged empirical science starting with Galileo and then grew into the beginnings of physics as it is known today with men like Isaac Newton.
Classical mechanics has virtually unlimited applications particularly useful at the scales of size and speed of everyday life since those were the scales it was developed on. Every aspect of human life is affected by the application of force in one manner or another. Classical Mechanics is the foundation of physics because it is where physics had it start and where its main participles were laid down. Classical Mechanics works fine within our every day experience but reaches its limits when dealing with the very fast the very small.