Archive for September, 2012
Thursday, September 27th, 2012
Feed: Dr. Myron Evans
Posted on: Thursday, September 27, 2012 12:14 AM
Author: metric345
Subject: Low Energy Nuclear Reactors for Industry and Every Home
This is great news and many thanks! I think that we have found the mechanism independently and UFT226 has been read 556 times this Spetember, UFT227 179 times, and UFT228 Sections 1 and 2 has just been posted. Horst and Doug are working on Section 3 as you know. There is overwhelming interest in LENR on this blog. I hope that these reactors will get rid of wind turbines as quickly as possible.
In a message dated 26/09/2012 23:23:09 GMT Daylight Time writes:
Dr. Evans…hope you (all) are well. Here is another potentially interesting LENR commercial venture named Brillouin Energy Corporation: http://brillouinenergy.com/?page=history. They have just signed a development agreement with Stanford Research Institute from where one of their scientists came.
When you mentioned in this current note the Wentzel / Kramers / Brillouin approximate solution of the Schroedinger equation, the name association clicked. This company is further claiming that they will be early to market based on an “understanding of the underlying theory,” an intriguing comment given your reference here.
Very best,
Steve Bannister
University of Utah
On 9/26/2012 6:50 AM, EMyrone wrote:
In this case the transmission coefficient of the standard theory is eq. (23) or eq. (26). This is the Gamov theory at its simplest. So computer algebra can be applied now by co authors of UFT229, Horst Eckardt and Douglas Lindstrom, to determine whether tunnelling through the Coulomb barrier is ever possible This means checking the derivation of eq. (23) and evaluating it by computer algebra. By inspection of eq. (23) tunnelling seems possible when:
a >> x
i.e.
V >> E
when x sub 1 reduces to
x sub 1 ~ 8.33 x 10 power 6 root ((Z sub 1 Z sub 2) a)
so for small a or low E, T becomes enough for low energy nuclear fusion. This theory is described in Merzbacher pp. 126 ff. and uses the well known Wentzel / Kramers / Brillouin approximate solution of the Schroedinger equation for any barrier as shown in Fig. (1). This theory already gives the gist of LENR, and can be made much more sophisticated. The fine structure constant enters into the theory, which gives a clue as to how the ECE vacuum may affect the process, i.e. how energy from spacetime may enter the calculation in the simplest way as in UFT85 for the Lamb shift.

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Thursday, September 27th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 11:25 PM
Author: metric345
Subject: Daily Report 26/9/12
There were 2,952 hits from 630 distinct visits each of n real visits, 20.5% spiders from baiudu, google, MSN and yandex. CEFE38, FPL24, CEFEL13, LMEP8. Institute of Mathematics, Statistics and Scientific Computation State University of Campinas Brazil UFT142; Department of Physics Laurentian University Canada UFT25; Technical University Colombia Felker14 (Sp); University of Colorado UFT80; Florida International University Proof 5; Louisiana State University Essay48, UFT122; Mathematics Ohio State University UFT110; Physics University of Idaho UFT176; University of Poitiers general; Science Institute University of Iceland Proofs of ECE Theory, publications, AIAS staff ; Mohawk Regional Information Center, Verona, New York State UNCC Saga Part 4; King Mongkut’s Institute of Technology Thailand infinite solenoid; National Tsing Hua University Taiwan UFT177; City of Tillamook Oregon UFT4. Intense interest all sectors, attached uage file updated daily. UFT226 read 556 times, UFT227 read 227 times in September.
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Summary Period: September 2012 – URL
Generated 26Sep2012 23:55 EDT

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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 11:05 AM
Author: metric345
Subject: Erratum Note 229(2)
Multiply eq. (5) by – 2, this makes no difference to the order of magnitude of the result.

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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 6:53 AM
Author: metric345
Subject: 229(1): LENR, Quantum Tunnelling through the Coulomb Barrier
In this case the transmission coefficient of the standard theory is eq. (23) or eq. (26). This is the Gamov theory at its simplest. So computer algebra can be applied now by co authors of UFT229, Horst Eckardt and Douglas Lindstrom, to determine whether tunnelling through the Coulomb barrier is ever possible This means checking the derivation of eq. (23) and evaluating it by computer algebra. By inspection of eq. (23) tunnelling seems possible when:
a >> x
i.e.
V >> E
when x sub 1 reduces to
x sub 1 ~ 8.33 x 10 power 6 root ((Z sub 1 Z sub 2) a)
so for small a or low E, T becomes enough for low energy nuclear fusion. This theory is described in Merzbacher pp. 126 ff. and uses the well known Wentzel / Kramers / Brillouin approximate solution of the Schroedinger equation for any barrier as shown in Fig. (1). This theory already gives the gist of LENR, and can be made much more sophisticated. The fine structure constant enters into the theory, which gives a clue as to how the ECE vacuum may affect the process, i.e. how energy from spacetime may enter the calculation in the simplest way as in UFT85 for the Lamb shift.
a229thpapernotes1.pdf

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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 3:46 AM
Author: metric345
Subject: Two Particle Scattering Models
This is an interesting idea, there is also the propagator method of S matrix theory. I have just sent over UFT228 and posted it on the blog, alongside its twelve background notes.
In a message dated 26/09/2012 09:16:09 GMT Daylight Time, writes:
Doug, The problem is that the model contains only one particle and a barrier. The “target particle” is only described by the barrier but not by its mass. The radius of the nucleus grows only slightly with the nucleon number so there is no real target dependence. It would proabably better to find a combination of particle tunneling with the new ECE scattering methodology.
Horst
Sent: Wed, Sep 26, 2012 2:39 am
Subject: Re: Fwd: Transmission plots, E dependence
I believe so. I will do it tomorrow.
Would it worthwhile to solve
Nia + p→Cu a+1 + MeV
or
2 6C12 + 2 8O16 →→26Fe56
or something similar with the model.
Doug
:
Doug, your picture looks good. For the paper it would be helpful to add an axis description (letters T, a, E). Can you add this to Mathematica?
Horst
Am EMyrone
These are excellent graphics from co author Dr Douglas Lindstrom to add to those by co author Dr Horst Eckardt. It would be most important to use these graphics to find the optimal m, a, V sub 0 and E for maximum transmission in the non relativistic limit. It is important to find the condiutions under which an atomic mass can quantum tunnel optimally (T goes to one). The important finding is that relativistic velocities inhbit quantum tunnelling. It is known that atoms can quantum tunnel from the dissertation just quoted.

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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 3:38 AM
Author: metric345
Subject: FOR POSTING : Background Notes for UFT228
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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 3:33 AM
Author: metric345
Subject: FOR POSTING : UFT228 Sections 1 and 2
This is the pdf and rtf file for UFT228, Sections 1 and 2. The final form of the equation for the relativistic transmission coefficient is eq. (41), with k and kappa defined as in eqs. (44) and (45). So the graphs in Section 3 should be based on these equations, which reduce to the usual result in the non relativistic limit.
a228thpaper.pdf

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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 1:08 AM
Author: metric345
Subject: Results for relativistic tunneling, mass dependence
Many thanks again to co author of UFT228, Dr. Horst Eckardt. These are very useful results again. In Section 3 of UFT228, these very useful graphics and incisive discussions can be written up by co authors Horst Eckardt and Douglas Lindstrom. As usual I will write up Sections 1 and 2. For this blog readership the background notes ought to be considered as complementing the finished paper, giving a great deal more detail. Each paper has up to a dozen or so accompanying notes. The notes search for a definite theme for the paper, i. e. search for new and original ideas. The paper is the finished work. With staff and funding in a central laboratory, and with supercomputer support, these results could be rapidly developed. Cornell Theory Center was a model for a department revolving around supercomputers and clusters, in that case IBM supercomputers of that era. Computational quantum physics code has been very highly developed into code libraries for supercomputers and other computers, and specialists could attack the LENR problem from this point of view of quantum tunnelling to find the optimal conditions under which LENR occurs. The extra input given by ECE is the possibility of energy being transferred from spacetime. UFT228 discusses the fundamental theory of quantum tunnelling, which can be augmented in the next paper by spacetime input. Conventional quantum tunnelling alone does not seem to be sufficient to produce fusion because of the mass dependence. There must be some extra source of energy, and in ECE theory, that comes from spacetime.
In a message dated 26/09/2012 00:38:12 GMT Daylight Time, writes:
This is the mass dependence for the ee tunneling. The three curves are for nonrelativistic to ultrarelativistic electrons (v/c=0 to 0.99). The higher v/c, the smaller the mass required for maximizing T. The m scale is in units of electron masses.
If the included Figure cannot be seen, I can resend it as an attachment.
Horst
Am 25.09.2012 20:30, schrieb EMyrone
These are important results from Dr Horst Eckardt, they show that the slower the incoming particle the more the tunnelling – so it seems that this is strong evidence for low energy nuclear reaction. The high energies needed for relativistic effects inhibit the quantum tunelling and fusion. I used google keywords “quantum tunnelling of atoms” to find that there is a complete dissertation on the net on the subject of atomic quantum tunnelling. I suggest a plot of T against m from the standard equation for transmission, eq. (10) of note 228(12) without relativistic effects, keeping everything constant except m. Looks as if UFT228 will be a good paper.

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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 12:48 AM
Author: metric345
Subject: Intense Interest in Tunnelling Work
There is intense interest in our current work on quantum tunnelling on the blog. I will finish my part of UFT228 today. There is a low energy nuclear reaction (LENR) laboratory in the University of Illinois at Urbana, and there was a visit to www.aias.us yesterday from that department. So LENR is clearly an academic subject that has been accepted as reproducible and repeatable physics. It is a valuable source of new energy. AIAS is currently applying ECE theory to understand its basics in UFT226, UFT227 and accompanying notes, and currently we are working on UFT228 and accompanying notes and graphics. The notes are being read as soon as they are produced and as intensely as the finished papers. The blog feedback is dominated for the past three or four weeks by our work on LENR.

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Wednesday, September 26th, 2012
Feed: Dr. Myron Evans
Posted on: Wednesday, September 26, 2012 12:38 AM
Author: metric345
Subject: Daily Report 25/9/12
There were 2,088 from 624 distinct visits, 31% spiders from baidu, google, MSN and yandex, CEFE34, FPL24, CEFEL13, LMEP8. University of New Brunswick Canada UFT140; Electrical Engineering Swiss Federal Institue (ETH) Zurich UFT149; Norte University Colombia Essay25 and general; Oriente University Cuba general; Midtjylland Regional Hospital Aarhus Denmark UFT33, UFT papers, UFT3; Agrocalidad Government of Ecuador UFT12; Engineering Florida State University UFT56; State University of New York Geneseo UFT25; Department of Physics University of Louisville UFT41; Louisiana State University Proof4; Students Reed College Portland Oregon ECE theory; Stevens Institute of Technology Hoboken New Jersey UFT4; Low Energy Nuclear Reactions Laboratory Department of Nuclear, Plasma and Radiological Engineering, University of Illinois Urbana Proof1; University of Michigan UFT57; University of New Mexico UFT197; Faculty of Science and Technology Basque University UFT41, UFT42; Autonomous University Madrid Essay37; University of Poitiers general news and udpates; Greek Schools Alliance 2D paper by Doug Lindstrom; Milan Polytechnic UFT42; Korean Advanced Institute of Science and Technology Johnson Magnets; Seoul National University UFT13; Pontifical Catholic University of Peru UFT146; Department of Physics Stockholm University UFT33, Proof3 with additional notes; King Mongkut’s Institute of Technology Ladkrabang Thailand 2D paper by Doug Lindstrom; National Chiao Tung University Taiwan UFT116; Deaprtment of Physics Bristol University UFT149; Jodrell Bank Centre for Astrophysics University of Manchester UFT67. Intense activity all sectors. Attached usage statistics updated daily.
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Summary Period: September 2012 – URL
Generated 25Sep2012 23:55 EDT

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