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Author Topic: Meyl - Scalar Waves (first Tesla physics textbook for engineers) (2003)  (Read 11613 times)

lltfdaniel1

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Meyl - Scalar Waves (first Tesla physics textbook for engineers) (2003)

zip contains other pdf books in file,going on about fields in this subject etc,

http://www.mediafire.com/?dzzxdzxnqgd

32.48 MB


lltfdaniel1

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Book contents,

(http://img101.imageshack.us/img101/149/bookcontentspicturenw3.jpg)

The biggest file in that is of course the file named as the title of this topic.

lltfdaniel1

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when accessing the textbook for engineers you have over 600 pages on this topic.

(http://img501.imageshack.us/img501/3797/657pagesvj5.jpg)

Enjoy, please contact me if there are unhappyness about my links on this forum and i will remove when i come on to it,the videos are ment to be watched on pc and not to be sold just to give understanding to people who do not know so much about this.

lltfdaniel1

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Translation of Meyl - Elektrosmog, die physikalischen Grundlagen with systran


Electrical smog, the physical fundamentals
of
Professor Dr. - engineer Konstantin Meyl
To hardly believe that even 100 years after their discovery still no measuring instruments for scalar waves on the market that some makes the proof as in the Middle Ages still with the W?nschelrute that succeeds in the science is perfectly ignoring the discovery of longitudinal electrical waves that according to European Union regulation EMV EMV-Feldst?rkemessungen at completely different waves, which broadcast waves are to be made, and that with characteristics is argued, which do not apply at all to scalar waves! Are we instrumentation really still in the Middle Ages? Perhaps are broadcast and scalar waves and/or transverse waves and longitudinal waves together-agitated here to an indigestible Wellensalat?
1. A condition
Began everything with a speculation in the appendix of a text book from the year 1864 of a certain James Clerk Maxwell: If the laws of the electricity and the magnetism were supplemented around a dielectric shift component (extension of the Amp?reschen Durchflutungsgesetzes), then were the result a wave equation, which describes all observed characteristics of the light mathematically correctly [1]:
1? 2E? E =? ? ? ?
c2? t2
This equation is the basis of today's high-frequency engineering. Now however two completely different kinds of wave hide themselves in this formulation, because the used delta operator consists after the arithmetic rules of the vector analysis of two portions, the gradient of the divergence and the double rotation. If we set the portion of the divergence to zero, then the well-known broadcast wave remains, which is called also Hertzsche wave, after Heinrich Hertz had experimentally proven it in Karlsruhe 1888. With this aspect of the wave equation it acts around those, of Maxwell described transverse wave, with which the pointers of field swing transverse to the direction of propagation. The propagation again takes place with speed of light C.
 
2.   Statement
If we regard the reverse case and set this time the rotation of the pointer of field to zero, then the divergence requires a source field, then i rgendwelche charge carriers, quanta must lchenstrukturen or zumi ndestens Tei, e.g.. Eddy structures exist. Their propagation takes place, how we know from sound propagation, as shock wave in longitudinal way. The air molecules or structures schwi ngen thereby in direction of propagation.
This wave had been proven to 1890, only 2 years after Hertz, by Nikola Tesla in experiments. Since its wave completely showed different characteristics, Tesla, Hertz stated and contrary to it the Maxwell wave would have erred would not have proven at all. In reality the wave equation (1) contains actually both crack growth modes, as here shown.
The destroying judgement of Tesla was thus rash, because Hertz had not under any circumstances erred with its wave. Tesla however had thereby the scientific world against itself. If one breaks encyclopedias or text books open, then one wins the impression, which science does not have Tesla until today yet forgiven, which is probably because of that in the books frequently only from other books writing-off is located.
3.   Beginning
As a mediator the famous theoretical physicist lord Kelvin traveled 1897 to New York and let themselves the experiments of Tesla would move forward. He found the longitudinal wave confirmed and the existence proven [2]. After it was obvious that everyone is right with its wave, Hertz with the transversals and Tesla with the longitudinal, agreed both on it, for better distinction no more from wave separate in case of the Teslawelle of "radiation", thus from radiation to to speak.
Kelvin continued to refer to the necessary existence of electromagnetic structures, so that shock waves can be formed. He explained the radiations with the concatenated and interlocked ring eddies of his well-known eddy model, which is based on work of the physicist Hermann of Helmholtz. Kelvin proceeded from the ether conception and explained the light propagation as wave in the ether and the subject as Wirbelbewegung.
Into its model conception the longitudinal waves fit themselves in informally as eddy propagation in a frictionless ether. A purchase to the wave equation (1) however did not manufacture Kelvin, not even Maxwell, who sympathized with the eddy theory openly [3].
But the development ran historically regarded into completely different direction. Starting from 1902 quantum physicists, aforementioned of Max Planck, rolled the conceptions of classical physics over eddies and ethers flatly. Thus they wanted or inadvertently completely besides also Teslas radiation directly with buried. At the end of this century it becomes slowly clear that this erroneous trend represents a consequence-fraught tragedy not only for physics, but for the whole society (atom bomb, nuclear power, E-smog, etc.). Without until today to have understood, what quanta consist of at all and from where they come, it goes of
 
this occupational group a dominance and an ignorance out, which look for their-same in history.
- 3 -
4.   Opinion
Who wants however progress, needs to tie only with the classical physics of the last century or it develops an understanding for the wave equation (1), after which longitudinal and transversal waves arise always coupled. Only who could mean itself an eye zuh?lt, the electromagnetic wave was purely transverse and the sound purely longitudinal. A transversal acoustic wave comes into air not too far, why under neglect of this portion the sound is usually regarded as pure longitudinal wave.
With a propagation by the earth, like with an earthquake, however both portions can be received. Since their propagation is differently fast, first the faster oscillations arrive and those are the longitudinal. From the time delay, with which the transverse wave arrives with the measuring station, over the different propagation speed the distance is determined for the epicenter of the quake.
In the same way an interconnection of both kinds is to be expected with electromagnetic waves. Thus each radio amateur the so-called bumps, which follow the curvature of the earth after mysterious kind allegedly and with the receiver arrive generally faster, knows itself as gradlinig the spreading Hertzschen waves reflected at the ionosphere. Some speaks for it that it could concern with the bumps the likewise sent longitudinal wave portion. Existence proofs in the opinion would be thus present and which concerns the interconnection of both wave components, then this comes in the wave equation to the expression already comes.
5.   Proof
In case of the longitudinal wave the electrical field is nonvortical. Thus the pointer of the electrical field strength can be derived from a scalar potential. Therefore one speaks of a scalar wave, since from the general wave equation a scalar wave equation becomes, which describes itself a longitudinal wave spreading with any speed.
For such scalar waves derivations are well-known. Particularly with the presence of space charges they can appear as even waves in solids. Since they besides in plasmas a large role play, they "plasma waves" are also called [4]. We can note that from mathematical view the existence of these waves is likewise given. Still the question remains to experimental physics.
 
6.   Experiments
Which experiments did Tesla of the public show? In a patent specification from the year 1905 Tesla gives the measured propagation speed to a longitudinal wave at 471,240 kilometers per second, sent by it, to [5]. Thus its signal was faster than the light. It made itself publicly merry over Einstein and called relativity theory Nonsence [6].
Now anyway only a middle propagation speed can be indicated for a longitudinal wave, since the oscillation takes place in direction of propagation and constantly changes the speed. A characteristic propagation speed as with the light cannot give it in the sense at all!
With the Hertzschen wave the oscillation takes place transverse, thus perpendicularly to the direction of propagation and thus by it decoupled. As consequence the Hertzsche wave does not let itself tunnels. This becomes clear with a Faraday's cage, whose mesh size is so small selected that no more wave is able to penetrate the inside the cage.
Eddy particles however leave themselves to tunnels. For it the principle of the length contraction, which says, the faster itself a particle moved, is valid all the smaller becomes it. A tunnel is the more thus course-tied, all the faster must the longitudinal wave be, if it wants to through-hurry it, with which the well-known tunnel effect would be explained.
Exactly this is at the university to Cologne with microwaves, in Berkley with photons, as well as to DO Vienna with laser beams measured and published [7, 8]. The results, which between the double and which ndigkeit are appropriate for fivefold the Lichtgeschwi, SI lp mittlerwei le world-wide after VOL lzogen and confirmed.
Tesla already tried to reach 20c and more before 100 years with high voltage tubes. With the tunnel effect there is no obstacle for longitudinal waves practically; they cannot be held back also by a screen cage [9]. In view to marketable screen mats or - to the unsatisfactory screen possibility a central meaning is attached to wallpapers against electrical smog.
7.   Wave or eddy
If now longitudinal waves exist, which are faster than the light and which, for example the acoustic wave, which are slower, then will give it also such, which spreads straight with speed of light. One calls these eddies photons. The light appears from this and for no other reason once than wave and once than particles.
It is recommended, instead of speaking particles with the photon from an eddy to, which has naturally a particle character. Between wave and eddy a close verwandschaftliche relationship exists, as a view of the measuring technique shows immediately. There is at all no measurement receiving device, with that a wave directly
 
provable and measurable would be. Each antenna produces a "standing" wave, which is however nothing else, by reflection at the antenna end first as a stationary eddy. The only one absorption term, which in addition-steps in the wave equation can , which the absorption of a wave describes mathematically, is finally the eddy [9]!
With an antenna if a signal is received, then one can not regard to it whether it was a wave or an eddy before and whether it had on the way been as transversal or as longitudinal wave.
- 5 -
The radio amateur receives the bump with the same antenna, with which he receives also the broadcast wave.
Also at the Cologne university with the measurement of trans-light velocity once without and once with tunnel the same microwave receiver was always used. By filtering the scalar waves in the tunnel only the measurable field strength drops strongly.
8.   EMV measures
Rolling a wave up into an eddy can take place at any time spontaneously. During the transition no energy is used. Wave and eddies are only two different however stable conditions the same electromagnetic field phenomenon [9]. Naturally the spontaneous changeableness and close interconnection of wave and eddy leads to large instrumentation problems.
If the spark mission of equipment could be measurably reduced by EMV measures, then a high probability exists that the disturbing scalar wave component likewise one decreases. The measures recommended by environmental technicians are predominantly meaningful from there but they do not offer a security against E-smog under any circumstances!
If with mobile phones for the fulfillment of product requirement specifications the antenna coupling is artificially worsened until the prescribed range is kept, then to have the technicians probably the radio waves reduces, by increasing the portion of biologically harmful longitudinal waves, and becomes such a thing then as contribution the health of the users angepriesen!
9.   transversal or longitudinal wave
A diagram of both waves is now very helpful. Without the Maxwell theory and the representation in a frequency band we would not know today yet that it itself with the broadcast waves (LW, MW, KW, UKW), with microwaves (? W), during infrared radiant heat (IR), with the light and with X-ray around acts the same phenomenon.
Perhaps my representation is helpful, which noise, photons, neutrinos and many other well-known as well as parawissenschaftlich designated to understand still unknown phenomena than something matching.
In fig. 1 the frequency f over the propagation speed v is laid on with the wavelength? as parameters. The broad line with 3.108 m/s represents the speed of light C. appears in the well-known linear representation the frequency band of the transverse waves here.
Crosswise to it, somewhat unusually, the longitudinal waves run. These begin themselves left with stationary noise, over the sound, as it in air, in water and in
 
Metal spreads, over a large, still to a large extent unexplored range of the bio photons, the heat eddy and the dowsing effects and ends beyond the Lichtgeschwi ndigkeit with the neutrinos.
Since alone for the transversals frequencies are necessary a dozen of specialized measuring instruments, it should be clear that for measuring the field shown in fig. 1 in logarithmic representation soon one hundred measuring instruments will be necessary, which it is valid to still develop.
 
   f [cycles per second]   Frequency            Lichtge-   Kos-   Waving
                        schwin-      lengthens?
                              
                           mix   
   1024 cycles per second                     digkeit C   Strah-      [m]
                                    lung         10 pm
   1023 cycles per second                                          
                                             
                                 ? -         0,1nm
   1022 cycles per second                              Strah-         
                                          
                                          
                                 lung         1 Nm
   1021 cycles per second                                          
                                                
                                             10 Nm
   1020 cycles per second                                          
                                             
                                             
                                 R?nt-         0,1? m
   10 19 cycles per second                              towards         1? m
   1018Hz                              strah-
lung         
                                          
                                          10? m
   1017Hz                                          
                                       New      0,1mm
   1016 cycles per second                                          
                                             
   1015Hz                              UV   trinos      1   mm
                                          
                                          
                        Photons            Light         1 cm
   1014Hz                                          
                                             10 cm
   1013Hz                                       
                                          
                                          
                                 IR         
                                             1 m
   1012Hz                                          
                                             
                                             10 m
   1011Hz                                          
                                             
                                             100 m
   10 GHz                                       
                                 ? W         
                                          
                                          1 km
   1 GHz                              UHF         
                                          
                                          
                                          10 km
   108 cycles per second                              UKW         
Rau-         schen                                 105 m
   10 MHz                                 KW         106 m
   1 MHz                                             
                                    MW            
                                                
   100kHz
10 kHz                                                
                                                   
                                       LW            
                                       VLF            
   1 kHz                                                
         Air               Body                           
   100 cycles per second                                                
         Sound               Sound               ELF            
                                                   
   10 cycles per second                                                
 
10,102,103,104,105,106,107,108,109 1010 1011 1012 1013
Propagation speed v [m/s] =? ?f
 
Fig. 1: Frequency diagram of longitudinal and transverse electromagnetic waves
 
10.   Optimierungsstrategieen
The question, why humans and nature use only longitudinal waves and no transverse waves for information purposes, lets itself with a view of graphics (fig. 1) to answer immediately.
With the transversals Hertzschen wave only the frequency lets itself modulate. The information must be transmitted serially, with the danger that under breakdown effects the remainder of information can be lost.
The longitudinal waves however are modulatable both in the frequency and in the wavelength. They possess a whole dimension additionally. With it information can be transferred very many faster and more surely in parallel way. Therefore these are decisively superior, to eddy information basic Tesla waves the Hertzschen waves.
Nature always works with the best solution, because it optimizes merciless. As soon as information technicians recognize the advantages and begin to use to expect is the next technological quantum transition. With the understanding and the copying of nature one will recognize at all only the errors of the today's technology. A possible realization would for example be that the digital radio signals of the D-nets exhibit a higher longitudinal wave portion and from there is biologically more precarious than similar to (AM/FM) modulated transmitters, because the high harmonic wave portion of a pulsed signal favours a rolling up of waves in eddies.
11.   Perfect resonance
It can shown that it acts with bio jets or bio photons, with which individual cells communicate exactly the same around forms of electromagnetic longitudinal waves, as during the nerve line and signal processing in the human brain [9]. A biological effect is to be expected from there also only from this radiation to.
It makes little sense to want to judge the electrical smog with commercial measuring and broadcast receivers to want to argue or with characteristics which are not at all applicable for the Teslastrahlung. One of the most frequent arguments refer to the distance between transmitters and receivers and are based on the law of the spacer square, after which the field strength with the square of the distance decreases (fig. 2).
This regularity is not valid with longitudinal waves by any means. Here completely different rules are valid. Tesla required perfect a resonance and could show that in the case of resonance 100% of the transmitting power with the receiver arrives that others, which do not go into resonance, even if they are closer to the transmitter nothing at all abbekommen and in this way only between the transmitter and the resonant receiver a kind communication or data exchange takes place.
Tesla installed in addition on a mountain in the Rocky Mountains a receiver for radiation into 42 kilometers distance of its transmitter in Colorado Springs. Before the eyes of reporters and spectators he let 200 fluorescent lamps shine to 50 Watts each. It had transferred the sent output of 10 kilowatts completely and without losses wirelessly, after resonance was manufactured. With the broadcast wave a tiny glow small lamp more cannot even be brought to shining in this distance.
 
Hertzsche wave propagation (transverse waves):
 
Tesla radiation (radiation) = scalar wave, longitudinal wave propagation:
 
 
It admits less is however that in the time, while Tesla co-ordinated the transmitter some animals on the surrounding pastures became wild, after straight the horses had been shifted over the metallic hooves electrical shocks. They had gone obviously first into resonance. After the lamps were on, again everything was calm.
The resonant receiver collects thus the lines of flux all in and takes thereby also the complete transmitting power on (fig. 2).
If in a restaurant possibly someone telephones with the mobile phone, which radiates also longitudinal portions beside the utilizable wave, then the possibility exists that only one guest is troubled by the radiations and all other guests nothing at all receives. Now, the guest, if he dares at all, will weight and will whine. But which is to happen, if one whines and around it its complaints evaluate hundreds as fancy.
12. Consequences
As measure to the self-help many a time a step may be helpful to the side, since it concerns with the radiations place-dependent standing waves, or another receiver approaches the transmitter, goes into resonance and takes over a part of the transmitting power.
With the distance to the transmitter thus by any means the received achievement, but only the probability does not sink to be met. A technically clean solution would be to set up receivers in the restaurants or in close proximity to transmitting poles which in-collect all harmful radiation and keep them away in such a way from humans.
Since here genuine achievement lines up with the receiver, the restaurant thereby lets itself still light up besides directly, as Schrebergartenbesitzer can confirm, which can light up their radishes with RIAS Berlin day and night.
Besides I demand a public promotion to the study of the Teslawellen, the development of suitable measuring instruments and the definition of limit values. It must be made clear for the decision makers and network users that a world-wide full-scale test with the population does not make a sense as involuntary pro gangs from unawareness and ignorance. It must be prevented that whole mankind with the lack of an available technology is selected. We should try it perhaps once with the reverse way, because the adjustment of the technology at the needs and constitution of humans is more recommendable and besides healthier!
 
13.   Literature
J.C.Maxwell: A Treatise on Electricity and Magnetism (1864/1891), Clarendon press, Dover Publications, Inc.. THE USA (1954), ISBN 0-486-60637-6
[2] Dr.N.Tesla: Famos Scientific illusion, Electrical Experimenter, New York, February 1919; S.A.J.T.Ratzlaff: Tesla Said, Tesla Book company, ISBN 0-914119-00-1
J.C.Maxwell, Encyclopaedia Britannica (1875); S.A.:
D.Ash, P.Hewitt: Science OF the gods, gateway Books, Bath, England (1990).
[4]   H.St?cker (Hrsg): Paperback of physics, publishing house Harri German, 2.Aufl.1994
[5]   N. Tesla: Kind OF transmitting electrical energy through the natural medium, US patent No. 787.412 of 18.4.1905.
[6]   Nikola Tesla: Ton of Einstein's Theories, rare Book and Manuscript LIBRARY, Columbia University, 15.04.1932, S.A. [2], S.122.
[7]   R.Y.Chiao among other things: Faster than the light? Spektrum der Wissenschaft 10/93
[8]   Enders, A., Nimtz, G.: Evanescent mode propagation and quantity tunneling, Physical Review E, VOL. 48, No.1 (1993), pp. 632-633, S.A. [2], S.120
[9]   K. Meyl: Electromagnetic environmental compatibility, part of 1: Causes, phenomena and scientific consequences. INDEL publishing house, Villingen Villingen-Schwenningen 1996, 2.Aufl. 1997, ISBN 3-98O2542-8-3
14.   Address of the author (and order address for its books): Professor Dr. - engineer Konstantin Meyl,
TZA (transfer center of the Stei nbeis foundation)
Leopoldstra?e 1, D-781 12 pc. George EN/Black Forest fax.: O7721/5187O

hansvonlieven

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G'day all,

I don't know why anyone bothers with these mechanical translations. I am fluent in both German and English and yet find it impossible to make head or tail of it.

Hans von Lieven

lltfdaniel1

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:-),they do give a bit away,depending if people want to read them  and do not know german, then they can,anyway Meyl according to rumour has a device that works apparently and i remember a person saying that his documents was in german,so i bothered to translate most of them.

Which can be found at this link http://www.overunity.com/index.php/topic,3165.msg46334/topicseen.html#msg46334 or by just going into the topic areas of this area of overunity.

hansvonlieven

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G'day all,

When dealing with scientific literature it is imperative that a syntax is used that is understandable by the reader. It does not take much to foster complete misunderstanding of the subject under discussion. It is imperative therefore that the text is clear and precise.

Mechanical translations fall far short of the requirements, in fact many "good" translations often miss the mark on important points.

To evaluate a theory with nothing than a grammatically incorrect and otherwise flawed translation is more than chancy.

It would be interesting to see the original.

Hans von Lieven