Underground info
Started by unknown · · 42 posts · last reply 30 March 2009
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#1 ·
http://www.zamandayolculuk.com/cetinbal/scalarpotential.htm (good bla bla about scalar stuff )
http://www.unusualresearch.com/scalarbib/scalarbib.htm (plz brg these documents here , I cannot read ) -
#2 ·
dankie i think you will like this i havent read it yet but its by beardon and the only words that caught my eyes so far on the front page is bi directional em waves. scalar stuff
http://www.scribd.com/doc/7162319/Bearden-Tech-Papers-Utilizing-Scalar-Electromagnetics-to-Tap-Vacuum-Energy -
#3 ·
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#4 · date not recorded
Time Travel Research Center lol
thanks for the docs
http://www.unusualresearch.com/scalarbib/scalarbib.htm
this one is cool
http://www.unusualresearch.com/scalarbib/djvu/SovietApotential.djvu
dl this to view djvu
http://sourceforge.net/project/showfiles.php?group_id=32953&package_id=78509 -
#5 · date not recorded
stans brother has thrown out many bones for us.. you just got to take alot of his causual talk on the wfc and focus on the little keys he gives us.. like he says the reason they use stainless is because it acts like a transistor. he says that and he mentions the silicon content. which is making it a semiconductor in a since? he mentions the creation process is cold rolled and alot of little triangle in the material? i was reading up on transistors and i came across this one..
The bipolar junction transistor (BJT) was the first type of transistor to be mass-produced. Bipolar transistors are so named because they conduct by using both majority and minority carriers. The three terminals of the BJT are named emitter, base and collector. Two p-n junctions exist inside a BJT: the base/emitter junction and base/collector junction. "The [BJT] is useful in amplifiers because the currents at the emitter and collector are controllable by the relatively small base current."[9] In an NPN transistor operating in the active region, the emitter-base junction is forward biased, and electrons are injected into the base region. Because the base is narrow, most of these electrons will diffuse into the reverse-biased base-collector junction and be swept into the collector; perhaps one-hundredth of the electrons will recombine in the base, which is the dominant mechanism in the base current. By controlling the number of electrons that can leave the base, the number of electrons entering the collector can be controlled.[9]
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"conduct by using both majority and minority carriers" i think this would be what im speaking of.. holes build up on one side while electrons on the other
"There are two recognized types of charge carriers in semiconductors. One of them is electrons, which carry negative electric charge. It addition, it is convenient to treat the traveling vacancies in the valence-band electron population (holes) as the second type of charge carriers, which carry the positive charge."
THE WORD TRANSISTOR IS A CONTRACTION OF “CURRENT-TRANSFERRING RESIStor
"Bipolar transistors, like diodes, can be made from various semiconductor substances.
Silicon is probably the most common material used."
"Bipolar transistors have two P-N junctions connected together. This is done in either
of two ways: a P-type layer sandwiched between two N-type layers, or an N type
layer between two P-type layers." theres also a I-type i explain that further down the post.
i think the static voltage that is built up in the copper chokes maintain your static potenitals in the exciters that being one side positve with its scalar wave and the other side negative with its counter scalar wave.. then with how my schematic shows the stainless positve hooked to the positve side of the primarys magnetic induction... it is using the positive 49a-49n pulse to gate?
"Zero bias
Suppose that the base isn’t connected to anything, or is at the same potential as the
emitter. This is zero base bias, sometimes simply called zero bias. How much current
will flow through the transistor? What will the milliammeter (mA) show?
The answer is that there will be no current. The meter will register zero.
Recall the discussion of diode behavior from the previous chapter. No current flows
through a P-N junction unless the forward bias is at least equal to the forward breakover
voltage. (For silicon, this is about 0.6 V.) But here, the forward bias is zero. Therefore,
the emitter-base current, often called simply base current and denoted IB, is zero, and
the emitter-base junction does not conduct. This prevents any current from flowing between
the emitter and collector, unless some signal is injected at the base to change the
situation. This signal would have to be of positive polarity and would need to be at least
equal to the forward breakover voltage of the junction.
"Reverse bias
Now imagine that another battery is connected to the base at the point marked “control,”
so that EB is negative with respect to the emitter. What will happen? Will current
flow through the transistor?
The answer is no. The addition of this new battery will cause the emitter-base
(E-B) junction to be reverse-biased. It is assumed that this new battery is not of such
a high voltage that avalanche breakdown takes place at the junction.
A signal might be injected to overcome the reverse-bias battery and the forward
breakover voltage of the E-B junction, but such a signal would have to be of a high, positive
voltage."
how do they make p and n type semiconductors???
what about the I type semiconductor?? have you heard of that one???
A P-type semiconductor (P for Positive) is obtained by carrying out a process of doping, that is adding a certain type of atoms to the semiconductor in order to increase the number of free charge carriers (in this case positive).
An N-type semiconductor (N for Negative) is obtained by carrying out a process of doping, that is, by adding an impurity of valence-five elements to a valence-four semiconductor in order to increase the number of free charge carriers (in this case negative).
An intrinsic semiconductor, also called an undoped semiconductor or i-type semiconductor, is a pure semiconductor without any significant dopant species present. The number of charge carriers is therefore determined by the properties of the material itself instead of the amount of impurities. In intrinsic semiconductors the number of excited electrons and the number of holes are equal: n = p.
the key words n=p negative = positve
so where im trying to go with this is when the plate material is put under a certain type of a electrical stress( extra holes/ or overpoppulated electrons).. being a bidirectional flow pulse, created by stans sync pulse circuit.... the system can electromechanicaly dope the plates itself..
for every action there is an equal and opposite reaction.. its the other half of the equation thats been left out of electric.. the opposite reaction that is happening evenly with emf the even exchange rate happening.. with no oscilation! understand oscillation is making both forces have to switch direction constantly in ac. the sync pulse does nothin like that . it keeps pushing holes one way and electrons the other.. its like knowing how to make ether work like hydraulics.. the alternator is like a electohydraulic pump the chokes are like your hydraulic cylinders.. they hold potential???
a little bit about nickel l http://en.wikipedia.org/wiki/Nickel
"The most common oxidation state of nickel is +2 with several Ni complexes known. It is also thought that a +6 oxidation state may exist, however, this has not been demonstrated conclusively. The unit cell of nickel is a face centered cube with a lattice parameter of 0.352 nm giving a radius of the atom of 0.125 nm"
when they speak of oxidation state they are speaking of positve potential state of the material and It is also thought that a +6 oxidation state may exist, however, this has not been demonstrated conclusively
references
http://en.wikipedia.org/wiki/Minority_carriers
http://en.wikipedia.org/wiki/Transistor#Transistor_as_a_switch
http://en.wikipedia.org/wiki/I-type_semiconductor
outlawstc -
#6 · date not recorded
The conductivity of intrinsic semiconductors can be due to crystal defects or to thermal excitation. In an intrinsic semiconductor the number of electrons in the conduction band is equal to the number of holes in the valence band.
crystal defects
Crystalline solids have a very regular atomic structure: that is, the local positions of atoms with respect to each other are repeated at the atomic scale. These arrangements are called crystal structures, and their study is called crystallography. However, most crystalline materials are not perfect: the regular pattern of atomic arrangement is interrupted by crystal defects. [1] [2] [3] [4]. The various types of defects are enumerated here.
# 1 Point defects
# 2 Line defects
# 3 Planar defects
# 4 Bulk defects
Also amorphous solids may contain defects. These are naturally somewhat hard to define, but sometimes their nature can be quite easily understood. For instance, in ideally bonded amorphous silica all Si atoms have 4 bonds to O atoms and all O atoms have 2 bonds to Si atom. Thus e.g. an O atom with only one Si bond (a dangling bond) can be considered a defect in silica. [7]
http://en.wikipedia.org/wiki/Crystal_defects
An amorphous solid is a solid in which there is no long-range order of the positions of the atoms. (Solids in which there is long-range atomic order are called crystalline solids or morphous). Most classes of solid materials can be found or prepared in an amorphous form. For instance, common window glass is an amorphous solid, many polymers (such as polystyrene) are amorphous, and even foods such as cotton candy are amorphous solids.
http://en.wikipedia.org/wiki/Amorphous
Photon polarization
Photon polarization is the quantum mechanical description of the classical polarized sinusoidal plane electromagnetic wave. Individual photons are completely polarized. Their polarization state can be elliptical, circular, or linear. http://en.wikipedia.org/wiki/Photon_polarization
The piezoresistive effect
describes the changing electrical resistance of a material due to applied mechanical stress. The piezoresistive effect differs from the piezoelectric effect. In contrast to the piezoelectric effect, the piezoresistive effect only causes a change in resistance; it does not produce an electric potential.
Piezoresistive effect in silicon
The resistance of silicon changes not only due to the stress dependent change of geometry, but also due to the stress dependent resistivity of the material. This results in gauge factors two orders of magnitudes larger than those observed in metals (Smith 1954). The resistance of n-conducting silicon mainly changes due to a shift of the three different conducting valley pairs. The shifting causes a redistribution of the carriers between valleys with different mobilities. This results in varying mobilities dependent on the direction of current flow. A minor effect is due to the effective mass change related to changing shapes of the valleys. In p-conducting silicon the phenomena are more complex and also result in mass changes and hole transfer.
http://en.wikipedia.org/wiki/Piezoresistive_effect
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#7 · date not recorded
[youtube]http://www.youtube.com/watch?v=cvXtUKYs3tw[/youtube] -
#8 · date not recorded
awesome video, I always enjoy these, thanks for posting it -
#9 ·
no problem im just trying to point out some observations.. like there molding process they start to stretch the steel while its still hot right? whats that doing to the silicon inside??? then when its cooled off they still roll it out some more in a cold rolled process, whats that doing to the silicon? also they say that it forms a oxidized layer in presence of oxygen do to the oxidized chrome layer it develeops??. think on that.
The chromium forms a passivation layer of chromium(III) oxide (Cr2O3) when exposed to oxygen. The layer is too thin to be visible, and the metal remains lustrous. -
#10 ·
no problem im just trying to point out some observations.. like there molding process they start to stretch the steel while its still hot right? whats that doing to the silicon inside??? then when its cooled off they still roll it out some more in a cold rolled process, whats that doing to the silicon? also they say that it forms a oxidized layer in presence of oxygen do to the oxidized chrome layer it develeops??. think on that.
The chromium forms a passivation layer of chromium(III) oxide (Cr2O3) when exposed to oxygen. The layer is too thin to be visible, and the metal remains lustrous.
W/E the way s/s is done , we have no power over it . We will test with the s/s we have , 304 material . -
#11 ·
QuoteThe piezoresistive effect
describes the changing electrical resistance of a material due to applied mechanical stress. The piezoresistive effect differs from the piezoelectric effect. In contrast to the piezoelectric effect, the piezoresistive effect only causes a change in resistance; it does not produce an electric potential.
Piezoresistive effect in silicon
The resistance of silicon changes not only due to the stress dependent change of geometry, but also due to the stress dependent resistivity of the material. This results in gauge factors two orders of magnitudes larger than those observed in metals (Smith 1954). The resistance of n-conducting silicon mainly changes due to a shift of the three different conducting valley pairs. The shifting causes a redistribution of the carriers between valleys with different mobilities. This results in varying mobilities dependent on the direction of current flow. A minor effect is due to the effective mass change related to changing shapes of the valleys. In p-conducting silicon the phenomena are more complex and also result in mass changes and hole transfer.
http://en.wikipedia.org/wiki/Piezoresistive_effect
it makes the plates/ or tubes act like a diodes i think.. you know how a diode has a p-type (positve) and n-type(negative) well what if the silicon goes through the piezoresistive effect and it dopes itself with the force of pure opposite potentials one directional flow emf. that would use high potential vacuum to do that? stan said somthin about alignment due to the high potential but maybe he ment this.. i mean if they get doped like that (under intense electrical stress) in any normal circumstance +1000 and -1000 potential would want to cause current in a diode right? the current is not flowing because its stuck on the core.. it has a mutual inductance to its fello bifilar. since we are displacing on a 1 to 1 ratio.. 1 hole for one electron.. they are happy on the core..which i think would make it act like a doped capacitor??? i cant see over 3000 volts going to the water.. i think stan may get 40kv with the taperd cavity. due to geometrical
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#12 ·
Now that I read chapter 10 and 5 , its clear to me that its indeed a bifilar like you say ... I'm reading the part on the *miniature sun* , this is energy coming from the vacuum , hence truely opposing waves .
but becomes *more positive* because of the diode , chapter 10 is really informative .
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#13 ·
fellas we are stumbling into the basic of quantum mechanics!! i know if you guys really know what stan does to get the electron particle generator to work you know what im talking about.. stan hints on it a little bit. stan was saying that you can bond atoms that have never been bonded before because your able to strip enough electrons to make it happen.. the electron particle generator.. has a magnetic gas inside it.. magnetic gas doesnt exist at ambient tempatures.. stan quantim mechnicaly made it.. he used his vic with electrodes present by iron powder and argon gas. when placed under high voltage he would pluck electrons from argon and was able to get metal ions to bond.metal ions all spin the same way and they produce a emf.. stan is also the inventor of man made magnetic gas.. chemistry bonds occur between 1-10 volts..
this video is a must watch..
outlawstc -
#14 ·
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#15 ·
pretend you have a clock one hand has a hole at the end (light) and the other has a electron. these arms are both at 12 oclock.. when a displacement of electrons starts to take place the clock hands move bidirectional.. every time the clock hands cross paths they exchange a hole for an electron.. now really really focus on this in a realitivty manner(time) if your differential displacements are balanced then both clock hands are traveling bidirectional at the same rotation speed so they are meeting at 12 and 6 oclock every rotation. if theres a difference in potential then you will not be at 12 oclock,, you will create another rotation to occur thats uneeded.. like if the clock hand thats starts at 12 and is going counter clock wise was being forced with more potential.. it would be making that clock hand travel at a faster speed.. so if its going faster then you get your exchanges happening at different times.. like 12 then 5 then 10.. and it would be all off.. but if your in resonance your trade should be at like 12, 6, 12 ,6, 12, 6........ thats resonance in more detail?? so when you get that understood.
now think on this.. the earth.. can tell us so much more then we tend to notice..
we are on this sphere right??/.. what is it surrounded by on all sides? space!!! what is space?? vacuum!!!
well if its a vacuum what keeps this planet from falling apart??? there must be a force pushing down! well what force could be pushing on us??? gravity.. well whats creating that gravity? potential.. ..
invision all the layers of the atmosphere.. and consider the very top bordering space you have one electrode there and earth is the other.. what is happening between them 2 potentials? whats causing the ionosphere? all elements in that region are being ionized to positive energy state... ozone(higher energy state oxy gas) from radiant light and most likely the vacuum state of space potential!!! -
#16 · date not recorded
fellas we are stumbling into the basic of quantum mechanics!! i know if you guys really know what stan does to get the electron particle generator to work you know what im talking about.. stan hints on it a little bit. stan was saying that you can bond atoms that have never been bonded before because your able to strip enough electrons to make it happen.. the electron particle generator.. has a magnetic gas inside it.. magnetic gas doesnt exist at ambient tempatures.. stan quantim mechnicaly made it.. he used his vic with electrodes present by iron powder and argon gas. when placed under high voltage he would pluck electrons from argon and was able to get metal ions to bond.metal ions all spin the same way and they produce a emf.. stan is also the inventor of man made magnetic gas.. chemistry bonds occur between 1-10 volts..
yeah he said that, amazing stuff and what he explains makes perfectly sense, but is it is reality? hope we'll find out. -
#17 · date not recorded
Quoteyeah he said that, amazing stuff and what he explains makes perfectly sense, but is it is reality? hope we'll find out.
its real and it will work.. are atmosphere proves it everyday.. -
#18 · date not recorded
What aspect of the atmosphere proves "molecule creation from scratch"?
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#19 · date not recorded
the way im relating it to the atomosphere is simple..
"The Earth's atmosphere (or air) is a layer of gases surrounding the planet Earth that is retained by the Earth's gravity. "
why are they being retained? they say gravity and make it sound like only one force is happening.. but theres 2.. for every action there is an equal and opposite reaction right? and they trick us with the what goes up must come down. as if thats the result of newtons law.. because its logical and makes sence but its only half the equation from a variable potential aspect when it comes to motion.. potential is not defined well enough when it come to being related to gravity.. and how charges (by population and energy state) highly relate to ones position in the atmosphere. the pulling of earth, and the pushing of space.. which depends on objects potential.. we as humans are considered neutrals and are heavy and big in size when it comes to particle mass so we tend to be attracted to the positive charge just like in a atom.. just like positve hydrogen clings to carbon(neutral).. EVERYTHING relates lol think
Ionosphere
The part of the atmosphere that is ionized by solar radiation stretches from 50 to 1,000 km (31 to 620 mi; 160,000 to 3,300,000 ft) and typically overlaps both the exosphere and the thermosphere. It plays an important part in atmospheric electricity and forms the inner edge of the magnetosphere. Because of its charged particles, it has practical importance because it influences, for example, radio propagation on the Earth. It is responsible for auroras.
outlawstc -
#20 · date not recorded
stan knew how the universe works.. -
#21 · date not recorded
stan knew how the universe works..
Yes sir , Stan was a different kind of engineer .
He was an observer of nature , he simply understood it just like that mysterious ED guy .
Stan was engineering *matter* , this is what Bearden was talking about , *precursor engineering* . -
#22 · date not recorded
einstiens equation fits perfect for this observation..
E(total energy) = mass energy which is also the electron count of a atom?? x the constant speed of light squared..
the real kicker is light squared.. why is it squared? could it be to account for the opposite electron force flow that is happening in opposite direction? and the square is to account for the net force of energy E? which can only be determined by electron count of the matter.. which can determine how much light energy that is able to be abosrbed in that specific object.. you would think einstien would know this if its true?
remember whats going on with oxygen when its hit with light.. it puts electrons out in further orbits.. the mass is taking the positve hole (light) energy and it is trying to exhange its electron for it.. just because that electron is going into further orbit doesnt mean the nucleus of the atom is the only force pushing on the electron. but the light vacuum force is also pulling it?
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#23 · date not recorded
why is it squared?
a lot of the time you don't even need formulas to solve physics problems, you just look at the units.
Energy = [J] Joules
[J] = [N-m]
[N] = [kg-m/s^2]
Energy = [kg-m/s^2][m] = [kg-m^2/s^2] = [kg][m/s]^2
Energy = mass * velocity^2
The velocity of what? Lets take a guess at light? I'm sure it was one of the more significant velocities in the general subject area, apparently the big E had dreams about photons...
I'd say figuring out the formula was the easy part, proving it was light would have been the fun part.
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#24 · date not recorded
QuoteEnergy = [kg-m/s^2][m] = [kg-m^2/s^2] = [kg][m/s]^2
Energy = mass * velocity^2
so the velocity squared is light(hole) velocity and and electron velocity right??? -
#25 · date not recorded
Outlaw , plz do not get carried away .
I prefer when you end your sentences without a ?
Waiting for our approval is not gonna happen , find good evidence and confirm us .