Resonance frequencies
Started by jaggedE · · 11 posts · last reply 9 August 2012
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#1 ·
does anyone know where i can get the resonance frequencies of the following elements or a method of determining them.
aluminium, copper, chromium, iron, tin, cobalt, nickel, bismuth, nitrogen, oxygen, rhodium, silver, gold, platinum, palladium, zink, calcium, potassium, sodium, zirconium and boron.
it would be very helpful for my research.
thanks,
JaggedE -
#2 ·
check here
WebElements Periodic Table of the Elements
just click on the element of interestExplore NMR (Nuclear magnetic resonance - Wikipedia, the free encyclopedia ) properties of the chemical elements through this periodic table
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#3 ·
I would think the resonant frequency would depend on the mass of the element involved.
Two bells made from the same material but different sizes would have a different resonant frequency. -
#4 ·
correct me if im wrong but as far as i know nuclear magnetic resonance (NMR) only exists when inside a magnetic field, when stanley myer fractured water i dont think that was in a magnetic field, unless the frequencies were correlating to the magnetic field of the earth, which would vary in intensity from location to location, disabling his ability to drive from the east coast to the west coast of america, since his equipment would have to change its frequency depending on the variation in intensity of magnetic field.MonsieurM wrote:
check here
WebElements Periodic Table of the Elements
just click on the element of interest
secondly supposing i provide it with a magnetic field to begin with, which is not such a great problem, it says the frequency is relative to hydrogen, meaning the frequency of hydrogen needs to be determined first. how would i go about doing that?
again correct me if im wrong but when myer was fracturing water he had varying amounts of water in his cell, according to what your saying with a change in volume of water the frequency should also change. furthermore there are huge distances between atoms of any element, effectively making them so many individual particles to resonate and the total quantity of the element becomes irrelevant. the total quantity of element comes into play only when your trying to break a structure made of the element say a glass, and not the element atoms from each other.Dave45 wrote:
I would think the resonant frequency would depend on the mass of the element involved.
Two bells made from the same material but different sizes would have a different resonant frequency. -
#5 ·
These few clips I uploaded a while ago might also be of interest the first is a simple Santilli demonstration
VTS_03_1.flv - YouTube
These units are at least 3x Faraday and as much as 5x as these clips show they are in service and certainly in use in Swedish airports and in Greece as well as US and British Municipalities although of course they are not destined for the public domain .. If you want one your going to have to make it yourself t.p.t.b are certainly not going to kill the shee- p-eople Milch cow . and if you try to manufacture or market I would suggest things wont go very "fine and dandy" still as you can see OU is relativly simple so why make it rocket science?
Alternative fuel Magnegas - YouTube
Watch Fox News MagneGas Video Online - VideoSurf Video Search
perhaps a little more efficient here is an aged video of Bob Boyce taking it a step further
note the one "popped" Diode in BBs experimental set up (which would again give the x6 frequency relationship) .. a very lucky accident followed by speed adjustment
Bob Boyce - YouTubeCornish Hydrogen Generator - KeelyNet 01/10/02This is "Untitled" by Duncan on Vimeo, the home for high quality videos and the people who love them. -
#6 ·
Duncan ... you are quite correct when asking Resonant to what ? depending on you point of reference .... the answer maybe different
the link provided was just a starting point ..... to discover a pattern if there is one
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#7 ·
I was reading up on inductive stove tops they use a pancake coil, they also have a circuit that adjusts the resonant frequency to match the load, if you think about it it would have to in order to heat different sizes of mass.
I wonder ac heats the conductor (cooking pan) because it switches the fields back and forth in the conductor will dc do the same.
I scored yesterday I got two variacs for five bucks apiece at the thrift store
I love a good deal.
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#8 ·
I have been working out of town for the last couple of months so I have not had any time for my projects but am buying supply's to work with when work slows down.
You will be seeing some of my work before long, as usual I have more idea's than I can ever build but I will finish a couple of my projects and be testing in the near future.
Ufo's motor has really got me interested I plan on going in this direction as well, his work is very interesting.
dave -
#9 ·
HELPFULWAVESDOTCOMjaggedE wrote:
does anyone know where i can get the resonance frequencies of the following elements or a method of determining them.
aluminium, copper, chromium, iron, tin, cobalt, nickel, bismuth, nitrogen, oxygen, rhodium, silver, gold, platinum, palladium, zink, calcium, potassium, sodium, zirconium and boron.
it would be very helpful for my research.
thanks,
JaggedE -
#10 ·
sorry everyone,
i was out of town for the past few months and couldnt respond to this thread earlier...
i went through all the links everyone has sent me and am still no closer to understanding anything. i think i need to go through all of them again a few times before it starts to sink into my head.
perhaps im starting way above by experience level, but i love challenges.
thanks all,
JaggedE -
#11 ·
jaggedE here is just a short tongue in cheek reason for me asking the question resonance with what? Resonance is such a one size fits all one dimensional term consider this simple crystal set circuit
Simple parallel (tank circuit) resonance : RESONANCE
The problem lies in the frequency which of course is related to wavelength you will notice here
How do you Convert wavelength to frequencyPart 1 of 6: Eric Dollard Tesla Longitudinal wave Energy SBARC Ham Radio with Chris Carson - YouTubehttps://vimeo.com/41021469
But if your going to start a research project on resonance I know which resonance I would be more Interested in ! The fact that there could also be a magnetic scalar wave also causes a sharp intake of breath.
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