I found this very insightful :
-------
Magnetic Fractals
-------
Thunderbolts Forum • View topic - Fractals Hint at Higher Universal Laws
Inexplicable Superconductor Fractals Hint at Higher Universal Laws | Wired Science | Wired.com
post#10 updated and this post http://www.energeticforum.com/143705-post15.html
Cycles, fractal patterns, and exponential functions
If you want to understand the world as a system then you need to investigate three key components.
Cycles
Fractal patterns
Exponential functions
Here are some of the authors I have studied
Fred Harrison(18 year land price cycle)
Nokolai Kondratieff (60 year price/debt cycle)
Oswald Spengler - book: "The Decline of the West" (1500-2000 civilisation cycles)
Martin Armstrong (8.6 year PI cycle, fractal patterns)
Robert Prechter (Elliott waves, fractal patterns, 300 years)
Chris Martenson (exponential functions, 10,000 years)
Most authors try and model the world with only one of these components. Martin Armstrong was the exception as he used 2 components (cycles and fractal patterns)
Winston Churchill said, "The further back you look, the further forward you can see."
So why not create a model that incorporates all three components and goes back as far as the Big Bang.
If you want to understand the world as a system then you need to investigate three key components.
Cycles
Fractal patterns
Exponential functions
Here are some of the authors I have studied
Fred Harrison(18 year land price cycle)
Nokolai Kondratieff (60 year price/debt cycle)
Oswald Spengler - book: "The Decline of the West" (1500-2000 civilisation cycles)
Martin Armstrong (8.6 year PI cycle, fractal patterns)
Robert Prechter (Elliott waves, fractal patterns, 300 years)
Chris Martenson (exponential functions, 10,000 years)
Most authors try and model the world with only one of these components. Martin Armstrong was the exception as he used 2 components (cycles and fractal patterns)
Winston Churchill said, "The further back you look, the further forward you can see."
So why not create a model that incorporates all three components and goes back as far as the Big Bang.
magnetic fractals
The software I use (FractInt) has this to say about magnetic fractals:
These fractals use formulae derived from the study of hierarchical lattices, in the context of magnetic renormalisation transformations. This kinda stuff is useful in an area of theoretical physics that deals with magnetic phase-transitions (predicting at which temperatures a given substance will be magnetic, or non-magnetic). In an attempt to clarify the results obtained for real temperatures (the kind that you and I can feel), the study moved into the realm of Complex Numbers, aiming to spot Real phase-transitions by finding the intersections of lines representing Complex phase-transitions with the Real Axis. The first people to try this were two physicists called Yang and Lee, who found the situation a bit more complex than first expected, as the phase boundaries for Complex temperatures are (surprise!) fractals.
One gets the feeling that perhaps FractInt's authors don't understand the science behind it any more than I do, but don't have any objections to using the formulae to make fractals. And here those formulae are:
The software I use (FractInt) has this to say about magnetic fractals:
These fractals use formulae derived from the study of hierarchical lattices, in the context of magnetic renormalisation transformations. This kinda stuff is useful in an area of theoretical physics that deals with magnetic phase-transitions (predicting at which temperatures a given substance will be magnetic, or non-magnetic). In an attempt to clarify the results obtained for real temperatures (the kind that you and I can feel), the study moved into the realm of Complex Numbers, aiming to spot Real phase-transitions by finding the intersections of lines representing Complex phase-transitions with the Real Axis. The first people to try this were two physicists called Yang and Lee, who found the situation a bit more complex than first expected, as the phase boundaries for Complex temperatures are (surprise!) fractals.
One gets the feeling that perhaps FractInt's authors don't understand the science behind it any more than I do, but don't have any objections to using the formulae to make fractals. And here those formulae are:
-------
Thunderbolts Forum • View topic - Fractals Hint at Higher Universal Laws
Fractals Hint at Higher Universal Laws
Inexplicable Superconductor Fractals Hint at Higher Universal Laws | Wired Science | Wired.com
post#10 updated and this post http://www.energeticforum.com/143705-post15.html



Comment