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<div class=3DSection1>

<p class=3DMsoPlainText align=3Dcenter style=3D'text-align:center'><span
style=3D'font-size:14.0pt;font-family:"Times New Roman"'><o:p>&nbsp;</o:p><=
/span></p>

<p class=3DMsoPlainText align=3Dcenter style=3D'text-align:center'><span
style=3D'font-size:14.0pt;font-family:"Times New Roman"'><o:p>&nbsp;</o:p><=
/span></p>

<p class=3DMsoPlainText align=3Dcenter style=3D'text-align:center'><span
style=3D'font-size:14.0pt;font-family:"Times New Roman"'><o:p>&nbsp;</o:p><=
/span></p>

<p class=3DMsoPlainText align=3Dcenter style=3D'text-align:center'><b><span
lang=3DEN-US style=3D'font-size:16.0pt;font-family:Arial;mso-ansi-language:=
EN-US'>WAVES</span></b><span
lang=3DEN-US style=3D'font-size:16.0pt;font-family:"Times New Roman";mso-an=
si-language:
EN-US'><o:p></o:p></span></p>

<p class=3DMsoPlainText style=3D'text-align:justify'><span lang=3DEN-US
style=3D'font-size:12.0pt;font-family:"Times New Roman";color:red;mso-ansi-=
language:
EN-US'><span style=3D'mso-spacerun:yes'>&nbsp;</span><o:p></o:p></span></p>

<p class=3DMsoPlainText style=3D'text-align:justify'><span lang=3DEN-US
style=3D'font-size:12.0pt;font-family:"Times New Roman";color:red;mso-ansi-=
language:
EN-US'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoPlainText style=3D'text-align:justify'><span lang=3DEN-US
style=3D'font-size:12.0pt;font-family:"Times New Roman";color:red;mso-ansi-=
language:
EN-US'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoPlainText style=3D'text-align:justify'><span lang=3DEN-US
style=3D'font-size:12.0pt;mso-bidi-font-size:10.0pt;font-family:"Times New =
Roman";
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Waves deal=
 with
the transfer of energy through space.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>Space is compactly filled with Eterons existing in a weak dipole sta=
te.
While Eterons are not the smallest structure in space, for us, at present, =
they
represent the smallest unit for our following discussion. From the viewpoin=
t of
the privileged observer, the diameter of Eterons is the basic length unit in
space. Variation of that diameter causes will cause a torsion in space.<o:p=
></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Take an Et=
eron
and press it against another in a specific direction.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>This is the basis on which we will=
 take
our first real look at waves. The Eteron that is getting compressed as per =
the
previous chapter will be compressed from it&#8217;s resting diameter. This =
is
providing the Eteron doing the pressing is in a more compressed state.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The first Eteron will decompress g=
iving
up its energy to the next Eteron and in this way passes energy on.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The act of decompressing of one Et=
eron
provides the next Eteron with the energy to compress.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Let us the=
n take
an Eteron and press it against another in a specific direction.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>This is the basis on which we will=
 take
our first real look at waves. The Eteron that is getting compressed as per =
the
previous chapter and will be compressed from it&#8217;s resting diameter. T=
his
is providing the Eteron doing the pressing is in a more compressed state.<s=
pan
style=3D'mso-spacerun:yes'>&nbsp; </span>The first Eteron will decompress g=
iving
up its energy to the next Eteron and in this way passes energy on.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The act of decompression of one Et=
eron
provides the next Eteron with the energy to compress.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>This of co=
urse
doesn&#8217;t occur in an instant.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>In fact each stage has a set time period for the
compression/decompression action.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>As mentioned previously the Eteron has an internal clock and only one
action can occur at any one time for our compression-element (the Eteron).<=
span
style=3D'mso-spacerun:yes'>&nbsp; </span>Given this, the action of transfer=
ring
energy from one Eteron to another will occur across a number of intervals b=
ased
on individual Eteron clock periods.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>Each Eteron has its own &#8216;personal&#8217; internal clock. If an=
 adjacent
Eteron presses against the next Eteron during an interval smaller than t,
although its diameter reduces during this sub time element, when the pressu=
re
ceases &#8211; and remember this is within one tick &#8211; the Eteron retu=
rns
to its initial diameter, returning energy initially supplied to it to the o=
ther
side. Staying with this Eteron, if the maintenance-pressure on the Eteron <=
i>becomes
smaller</i>, that Eteron does not expand before the interval &#8216;t&#8217;
&#8211; it has to wait until the full interval passes before changing.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>At this point it changes its perso=
nal
diameter and the next Eteron will sense this and only at this point It will
then response in the next interval of &#8216;t&#8217;. (*)<o:p></o:p></span=
></p>

<div style=3D'mso-element:para-border-div;border-top:solid windowtext 1.0pt;
border-left:none;border-bottom:solid windowtext 1.0pt;border-right:none;
mso-border-top-alt:solid windowtext .75pt;mso-border-bottom-alt:solid windo=
wtext .75pt;
padding:1.0pt 0cm 1.0pt 0cm'>

<p class=3DMsoNormal style=3D'text-align:justify;border:none;mso-border-top=
-alt:
solid windowtext .75pt;mso-border-bottom-alt:solid windowtext .75pt;padding:
0cm;mso-padding-alt:1.0pt 0cm 1.0pt 0cm'><span lang=3DEN-US style=3D'mso-an=
si-language:
EN-US'>(*) <i><span style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;</span>Not=
e that
&#8216;t&#8217; is composed of far smaller time-units; these smaller time-u=
nits
are the smallest interval possible (at the moment). Eteron&#8217;s clock ha=
s an
internal &#8220;balance-wheel&#8221;; there is a constant amount of cycles =
to
complete one &#8220;t&#8221; interval. Some particles trigger that
balance-wheel; each particle that crosses the Eteron adds one
&#8220;tick&#8221;. Such a particle I call a &#8220;cronon&#8221;. Cronons =
flow
through Eterons; volume of Eteron determines amount of ticks to complete a
&#8220;t&#8221; interval. A bigger Eteron intercepts more cronons, so
&#8220;t&#8221; is a shorter interval. Small Eterons are in higher energy-s=
tate
(increased mass), so they intercept less cronons and it takes more time to
complete one &#8220;t&#8221;. That is why time stretches if<span
style=3D'mso-spacerun:yes'>&nbsp; </span>mass increases. This is the basis =
of
relativistic time-variation.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>(Something that will be touched on in chapter TIME.)<o:p></o:p></i><=
/span></p>

</div>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>If that pr=
essure
returns back to it&#8217;s original value without passing a full interval
&#8216;t&#8217;, the next Eteron will not sense a change and accordingly wi=
ll
not be compelled to change.<span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </spa=
n><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>There is an
issue to the concept of &#8216;t&#8217; here.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>There are in effect two values of
&#8216;t&#8217;.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The first is=
 the
Eteron&#8217;s &#8216;personal&#8217; &#8216;t&#8217;.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>This is the time taken simply to
decompress without considering the effect on the next Eteron.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The Eteron&#8217;s personal
&#8216;t&#8217; has to complete with a verifiable difference in
compression/decompression before the next Eteron senses a change.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Previously &#8216;t&#8217; had been
referred to as the time for both a decompression/compression however it rea=
lly
takes two intervals of an Eteron&#8217;s personal &#8216;t&#8217; to effect=
 a
transfer.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The first interval =
to
decompress and the second for the next Eteron to sense this change in press=
ure
of the Eteron next to it and respond.<span style=3D'mso-spacerun:yes'>&nbsp;
</span><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>In reality=
 the
personal &#8216;t&#8217; of an Eteron represents part of the total time for=
 a
transfer. A total transfer of energy from one Eteron to another takes the s=
um
of both &#8220;t&#8221;. The formula for the speed of light was given befor=
e as
d/t &#8211; however it is more precisely d/(t<sub>1</sub> + t<sub>2</sub>)
where each &#8216;t&#8217; here is each Eteron&#8217;s personal
&#8216;t&#8217;. Previously I had referred to &#8216;t&#8217; as the <b>who=
le
interval of change</b><i>.</i> Understanding now that there is no transfer =
with
a half interval. From here on I will refer to &#8216;t&#8217; as the interv=
al
for <b>decompression and then compression </b>of the two adjacent Eterons
together. The time &#8216;t&#8217; represents from here on what is really a
double &#8216;personal&#8217; interval or the time interval for the total
transfer of energy between <i>two</i> Eterons.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>So the time
taken for the decompression of the first Eteron followed by the correspondi=
ng
compression of the next Eteron represents <b>notionally the period </b>&#82=
16;t&#8217;.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>In the next time period &#8216;t&#=
8217;
the second Eteron decompresses passing energy to the third which then
compresses &#8211; a second notional &#8216;t&#8217; completes and so on. In
this way compression energy is propagated through Eterons.<o:p></o:p></span=
></p>

<p class=3DMsoBodyText><span lang=3DEN-US><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Let =
us
attach the notion of a &#8216;stage&#8217; to our compression-decompression
process or time &#8216;t&#8217;.<span style=3D'mso-spacerun:yes'>&nbsp; </s=
pan>A
stage here is the process of decompression and then compression of two
successive Eterons. From a single Eteron point of view, two
&#8216;personal&#8217; intervals of an Eteron clock.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>In this way the decompression/comp=
ression
process advances at the speed of d/t where d is the diameter of the Eteron =
and
&#8216;t&#8217; is the time taken for decompression/compression of two
successive eterons. </span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>It should =
be
said that the simplistic analysis of energy transfer from one Eteron to ano=
ther
is equivalent to the equalization of a &#8216;U&#8217; tube of water.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Enough energy is transferred to se=
e both
Eterons involved in the decompression/compression reach equal size for one
&#8216;t&#8217;.<span style=3D'mso-spacerun:yes'>&nbsp; </span>So for a sin=
gle
energy transfer from one Eteron to another the first will decompress to rea=
ch a
diameter half way to the next Eteron&#8217;s diameter. The Eteron receiving=
 the
energy will compress to </span><span lang=3DEN-US style=3D'mso-bidi-font-si=
ze:10.0pt;
mso-ansi-language:EN-US'>meet the decompressing Eteron in the middle &#8211;
both possessing equal diameters for both Eterons.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>This is explained in more detail b=
elow.<o:p></o:p></span></p>

<p class=3DMsoBodyText3 style=3D'text-align:justify'><span lang=3DEN-US
style=3D'font-size:12.0pt;mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US=
'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>In fact the
initial analysis assumes that the total energy of an Eteron is imparted in =
one
direction.<span style=3D'mso-spacerun:yes'>&nbsp; </span>In fact energy is
transferred only partially and transfers based totally on the concept of the
&#8216;U&#8217; tube mentioned just above. Under this circumstance we would
have the first Eteron decompressing partially in the direction of the second
such that the first and second Eterons would transfer enough energy to
&#8216;match&#8217; each other&#8217;s diameter.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>It is a reactionary process and wo=
rks in
the follow way.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span style=3D'mso-spacerun:yes'>&nbsp;</span><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp; </span>Without worrying=
 at
this stage where the initial pressure to applied comes from assume continuo=
us
pressure is applied to an Eteron.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>The process of this initial application is that the first Eteron tak=
es
the full force in the form of energy and compresses to a level commiserate =
to
the energy unleashed on it.<span style=3D'mso-spacerun:yes'>&nbsp; </span>I=
n the
second period this Eteron presses against the second Eteron providing the
second Eteron with energy to compress but in this case the first Eteron will
decompress to a level equal to the diameter of the second.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>In the third interval the third Et=
eron
is pressed and becomes compressed meeting the second Eteron&#8217;s diameter
half way.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The forth interval =
again
sees the third Eteron decompress back to a diameter equal to the fifth and =
in
the fifth interval the fifth Eteron decompresses to provide the sixth with
again a lesser partial energy and so on.<span style=3D'mso-spacerun:yes'>&n=
bsp;
</span>This is called an Eteronic necklace and results from the act of
continuous pressure by an Eteron on an initial single Eteron and then provi=
ding
subsequent provision of a maintenance force.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The proces=
s of
transfer of energy to the next Eteron is enough to make both Eterons have t=
he
same diameter at the end of the next time period &#8216;t&#8217;.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>This is intuitive and as mentioned
earlier very like the water in a &#8216;U&#8217; tube reaching an identical
height.<span style=3D'mso-spacerun:yes'>&nbsp; </span>In fact the sum of the
adjoining Eterons&#8217; energies (E) will be: <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:70.8pt;text-align:justify;text-in=
dent:
35.4pt;mso-layout-grid-align:none;text-autospace:none'><span style=3D'mso-b=
idi-font-size:
10.0pt'>E =3D1/(a&sup3;) + 1/(b&sup3;). <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span style=3D'mso-bidi-font-size:10.0pt'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span><sp=
an
lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'>It=
 is easy
to demonstrate that for a constant E the minimum value of a + b will be at =
the
point where a =3D b. (See Diagram 6.1)<o:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center;mso-layout-g=
rid-align:
none;text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'><!--[if gte vml 1]><v:shapetype
 id=3D"_x0000_t75" coordsize=3D"21600,21600" o:spt=3D"75" o:preferrelative=
=3D"t"
 path=3D"m@4@5l@4@11@9@11@9@5xe" filled=3D"f" stroked=3D"f">
 <v:stroke joinstyle=3D"miter"/>
 <v:formulas>
  <v:f eqn=3D"if lineDrawn pixelLineWidth 0"/>
  <v:f eqn=3D"sum @0 1 0"/>
  <v:f eqn=3D"sum 0 0 @1"/>
  <v:f eqn=3D"prod @2 1 2"/>
  <v:f eqn=3D"prod @3 21600 pixelWidth"/>
  <v:f eqn=3D"prod @3 21600 pixelHeight"/>
  <v:f eqn=3D"sum @0 0 1"/>
  <v:f eqn=3D"prod @6 1 2"/>
  <v:f eqn=3D"prod @7 21600 pixelWidth"/>
  <v:f eqn=3D"sum @8 21600 0"/>
  <v:f eqn=3D"prod @7 21600 pixelHeight"/>
  <v:f eqn=3D"sum @10 21600 0"/>
 </v:formulas>
 <v:path o:extrusionok=3D"f" gradientshapeok=3D"t" o:connecttype=3D"rect"/>
 <o:lock v:ext=3D"edit" aspectratio=3D"t"/>
</v:shapetype><v:shape id=3D"_x0000_i1025" type=3D"#_x0000_t75" style=3D'wi=
dth:75.75pt;
 height:85.5pt'>
 <v:imagedata src=3D"6WAVES_archivos/image001.wmz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img width=3D101 height=3D114
src=3D"6WAVES_archivos/image002.gif" v:shapes=3D"_x0000_i1025"><![endif]><s=
pan
style=3D'mso-spacerun:yes'>&nbsp; </span><!--[if gte vml 1]><v:shape id=3D"=
_x0000_i1026"
 type=3D"#_x0000_t75" style=3D'width:142.5pt;height:58.5pt'>
 <v:imagedata src=3D"6WAVES_archivos/image003.wmz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img width=3D190 height=3D78
src=3D"6WAVES_archivos/image004.gif" v:shapes=3D"_x0000_i1026"><![endif]><o=
:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center;mso-layout-g=
rid-align:
none;text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'>DIAGRAM
6.1<span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;
</span>DIAGRAM 6.2</span><span lang=3DEN-US style=3D'mso-bidi-font-size:10.=
0pt;
mso-ansi-language:EN-US'><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The just
compressed Eteron will seek to compress a third Eteron on the path of
compression. Between the second Eteron and the third the same process will
occur as it did between the first and second. At this instant, the second
Eteron has an increased diameter with regard to the first and equal to the
third. It effectively meets the diameter of the third half way between the
first and forth. The next cycle is the third Eteron compressing a fourth an=
d so
on up to a point where the condition of the compressing force of the last
Eteron is lower than the maintenance-force of the first Eteron that started=
 the
process - see Diagram 6.2. Once this condition is reached, an array of Eter=
ons
with successively increasing diameters exists.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>This process repeats to a point wh=
ere
the low-energy-end of the array has an equal pressure to the next Eteron in=
 the
Eteronic Medium. This process lengthens the array increasing the number of
Eterons at the low energy end up to a determined number of Eterons. The amo=
unt
is inversely proportional to the energy state of the initial Eteron that
contained all the energy. The maintenance-force is really the breaking forc=
e of
the surface-barrier.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The high=
er
said force, the higher is the minimum energy-difference between two adjacent
Eterons. <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
color:olive;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span><sp=
an
lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'>At=
 this
point in the discussion I will apologize for intentionally misleading the
reader in the interests of synthesizing specific important concepts. <o:p><=
/o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>When the f=
irst
Eteron compresses the second one, the final diameter of both Eterons is not
totally equal. A chain of Eterons does not exist in space by itself and wou=
ld
be always surrounded by neighbouring Eterons. At the very start of the
propagation of energy neighbouring Eterons possess equal diameter to the ne=
xt.
However upon the Eteron Energy-interchange the diameters of successive Eter=
ons
results in a &#8216;small difference&#8217;. In fact the diameter of the se=
cond
Eteron is a little bigger than that of first &#8211; they are not exactly e=
qual
as was stated above. This difference is proportional to the absolute energy
state. The difference in compression-forces is equal to the value of the
barrier-force. In other words, when the difference </span><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'>in compression forces (due to the differe=
nt
diameters) is lower than the barrier-force, the interchange of energy stops=
.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The final =
result
is a single dimensioned array or necklace of Eterons with constant increasi=
ng
radius reaching a maximum radius equal to those Eterons in a minimum energy
state (the Eteronic medium) represented in Diagram 6.2. The total energy of=
 the
whole necklace is the sum of the energies of all its Eterons in relation to=
 an
adjacent equivalent set of Eterons in the Eteronic medium. Decreasing the
diameter of the first Eteron, the radii of successive Eterons decrease
proportionally. <span style=3D'color:red'><o:p></o:p></span></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'color:red;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span><sp=
an
lang=3DEN-US style=3D'mso-ansi-language:EN-US'>A finite number of Eterons e=
xist in
the necklace &#8211; simply the number of Eterons relates to the successive
jumps in radius from the smallest radius to the radius of Eterons in the
surrounding Eteronic medium. As energy of an Eteron is given by 1/r<sup>3</=
sup>
(relating to the volume of the Eteron) and total amount of energy decreases
lineally along the necklace (relating to the linear propagation), total ene=
rgy
of the array or necklace must increase with the square of the necklace&#821=
7;s
decreasing length. <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>In fact gi=
ven a
specific level of energy only a corresponding number of Eterons can be
involved. That is a necklace will always contain a <b>specific number of
Eterons</b><i> </i>for a specific level of total energy.<o:p></o:p></span><=
/p>

<p class=3DMsoNormal style=3D'text-align:justify'><b><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span style=3D'mso-spacerun:yes'>&nbsp;</=
span><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp; </span>It is for this r=
eason
that the energy of matter-waves is proportional to the inverse-square of th=
eir
length.</span></b><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'> <o:=
p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>So
necklace-creation is determined due to a given length for a given energy. I=
f E
is the energy, then:<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:70.8pt'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;</span>E
=3D k/</span><span style=3D'font-family:Symbol'>l</span><sup><span lang=3DE=
N-US
style=3D'mso-ansi-language:EN-US'>2</span></sup><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'> <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:70.8pt;text-indent:35.4pt'><span
lang=3DEN-US style=3D'mso-ansi-language:EN-US'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:70.8pt'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'>Where </span><span style=3D'font-family:S=
ymbol'>l</span><span
lang=3DEN-US style=3D'mso-ansi-language:EN-US'> is the length of the neckla=
ce and <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:70.8pt'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'>k is the CONSTANT OF NECKLACE. <o:p></o:p=
></span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>This rule =
is
valid for pressure-waves in the Eteronic Medium. <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>This seems=
 like
a good place to identify actual theoretical sizes of the units described up=
 to
now. <span style=3D'mso-spacerun:yes'>&nbsp;</span>Consider the Eteron.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>What kind of size are we talking
about?<span style=3D'mso-spacerun:yes'>&nbsp; </span>Although the Eteron&#8=
217;s
diameter changes according to energy identifying its size serves as a way f=
or
the reader to visualise the processes discussed in this book better. <o:p><=
/o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Now the si=
ze of an
Eteron (if I am not wrong) is 1x10<sup>-9</sup><span
style=3D'mso-spacerun:yes'>&nbsp; </span>to 1x10<sup>-10</sup>&Auml; in the
surrounding Eteronic medium.(*) Now given the Angstrom is 1x10<sup>-7</sup>=
mm,
approximately 1.5x10<sup>-14</sup>mm. <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Given this=
 base
size and using it to analyse a single hydrogen atom provides a distance of =
near
one billion eterons across. Most of this &#8216;space&#8217; defining the
volume that we call a hydrogen atom is just that &#8211; space. <o:p></o:p>=
</span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>An electro=
n (its
Compton size) is near 50,000,000 Eterons across and this value is determined
theoretically but using Eterons each at the compression of the surrounding
Eteron medium - eterons of maximum size in space. However in reality Eterons
within a particle are compressed and accordingly their number increases for
that same distance across. The total number of eterons counted along an
electron-diametric cord must, in reality be more.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Size of th=
e most
heavily compressed eterons could take an energy value of the fastest (heavi=
est)
protons. Such protons come from deep space as cosmic radiation. These proto=
ns
are flattened (I guess) up to a thickness of only one eteron. Flattening is
proportional to energy. Protons have been observed with an internal energy
increased by 10<sup>10</sup>. This provides eterons (at a minimal diameter)=
 in
the order of 10<sup>-15</sup>&Auml; or 1x10<sup>-22</sup>mm.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>That means that the Eteron can ass=
ume a
diameter depending on the energy gained from 1x10<sup>-9</sup> to 1x10<sup>=
-15</sup>
&#8211; a significant range. (1 to 1,000,000)<o:p></o:p></span></p>

<p class=3DMsoBodyTextIndent><span lang=3DEN-US style=3D'color:red;mso-ansi=
-language:
EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;
</span></span><span lang=3DEN-US style=3D'color:windowtext;mso-ansi-languag=
e:EN-US'>Here
is the size-list:<o:p></o:p></span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Hydrogen a=
tom:
1.05 &Auml; =3D<span style=3D'mso-spacerun:yes'>&nbsp; </span>1.05 x 10<sup>
&#8211;7</sup><span style=3D'mso-spacerun:yes'>&nbsp; </span>mm<o:p></o:p><=
/span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Electron
(Compton-size): 0.024 &Auml;<span style=3D'mso-spacerun:yes'>&nbsp; </span>=
=3D<span
style=3D'mso-spacerun:yes'>&nbsp; </span>2.4 x 10 <sup>&#8211;9</sup><span
style=3D'mso-spacerun:yes'>&nbsp; </span>mm<o:p></o:p></span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Proton: 0.=
000013
&Auml; =3D 1.3 x 10 <sup>&#8211;5</sup><span style=3D'mso-spacerun:yes'>&nb=
sp;
</span>&Auml; =3D 1.3 x 10 <sup>&#8211;12</sup><span
style=3D'mso-spacerun:yes'>&nbsp; </span>mm<o:p></o:p></span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Minimum si=
ze of
eteron (1/10<sup>10 </sup>of proton): <o:p></o:p></span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>1.3 =
x 10 <sup>&#8211;15</sup>&Auml;<span
style=3D'mso-spacerun:yes'>&nbsp; </span>=3D 1.3 x 10<span
style=3D'mso-spacerun:yes'>&nbsp; </span><sup>-22</sup><span
style=3D'mso-spacerun:yes'>&nbsp; </span>mm<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'>(*)<i><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp; </span>I am not totally=
 sure
about this value. It is based on the energy difference between both spectrum
lines of the super-fine-spectrum of hydrogen (photon of <st1:metricconverter
ProductID=3D"21 cm" w:st=3D"on">21 cm</st1:metricconverter>). Explanation c=
an be
understandable only after reading chapter on PARTICLES. </i><o:p></o:p></sp=
an></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'color:blue;mso-ansi-language:EN-US'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'color:blue;mso-ansi-language:EN-US'><o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'color:blue;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp; </span></span><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'>Taking this into account the Length of
matter-waves can be calculated easily:<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;
</span><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;</span>L=3Dh/(v.m)<span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>where <o:p=
></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;&nbsp;&nbsp;&nbsp;&nbsp;
</span><b>v</b> is speed,<span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp; </span><o:p></o:p></spa=
n></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;&nbsp;&nbsp;&nbsp;&nbsp;
</span>m</span></b><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'> is=
 mass
(of a particle) and<span style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp; </sp=
an><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><b><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;&nbsp;&nbsp;&nbsp;&nbsp;
</span>h</span></b><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'> is
Planck&#8217;s constant. <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>For electr=
ons at
low speeds (less than 1 km/sec) L is in order of visible-light-photons, abo=
ut
1000 to 10,000 &Auml;. For bouncing electrons (in atoms) the average speed =
is
in order of thousands of km/sec and L it is about 3 to 30 &Auml;. <o:p></o:=
p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Consider a=
gain a
finished necklace with a stable support mechanism at one end.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>If this support mechanism at the
high-energy-end (the smallest Eteron) ceases, then intuitively the smallest
Eteron seeks to expand back in the opposite direction to the just formed
necklace. It generates an identical necklace in the other direction, a mirr=
or image
of the first. <o:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span lang=
=3DEN-US
style=3D'mso-ansi-language:EN-US'><!--[if gte vml 1]><v:shape id=3D"_x0000_=
i1027"
 type=3D"#_x0000_t75" style=3D'width:162pt;height:59.25pt'>
 <v:imagedata src=3D"6WAVES_archivos/image005.wmz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img width=3D216 height=3D79
src=3D"6WAVES_archivos/image006.gif" v:shapes=3D"_x0000_i1027"><![endif]><o=
:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center'><span lang=
=3DEN-US
style=3D'mso-ansi-language:EN-US'>DIAGRAM 6.3<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>See Diagra=
m 6.3.
However the structure as a whole would have double the number of Eterons in=
 it.
The process indicates that energy must be shared amongst all the Eterons in=
 the
structure. There must be a new length value due to the variation of the
energy-state of each Eteron (constant of necklace). The new body is a double
(symmetric) necklace. The last energy transfer is in the opposite direction=
 to
the formation of the first half and completes leaving a double necklace. For
the creation of the second half, the first half must be releasing energy. So
there is a determined energy-exchange direction and consequently a new
phenomenon appears.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The double
necklace moves in the direction of the first half&#8217;s initial propagati=
on.<span
style=3D'color:blue'><o:p></o:p></span></span></p>

<p class=3DMsoBodyText3 style=3D'text-align:justify'><span lang=3DEN-US
style=3D'font-size:12.0pt;mso-bidi-font-size:10.0pt;color:blue;mso-ansi-lan=
guage:
EN-US'><span style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </sp=
an></span><span
lang=3DEN-US style=3D'font-size:12.0pt;mso-bidi-font-size:10.0pt;mso-ansi-l=
anguage:
EN-US'>The second half, at the lower energy end (the rear), begins to relea=
se
energy back towards the initially formed front half decompressing eterons a=
nd
pushing whole body in that direction. So, the whole body moves decompressing
eterons at the rear and compressing them at the front &#8211; for each inte=
rval
t the entire double necklace shifts forward one Eteron. It is a body of
constant shape that advances compressing eterons at the front and decompres=
sing
Eterons at the rear. The formation of the double necklace occurs only in the
first cycle; after that, the body advances without changing its shape. The =
next
Eteron to be compressed at the front of the double necklace does not move a=
head
but becomes more and more compressed by &#8216;stages&#8217; equal to
&#8216;t&#8217; finally reaching the minimum diameter (the centre of the
necklace). Having reached this minimum size it begins to decompress step by
step (one step equals &#8216;t&#8217;) finally reaching the size of eterons
existence in the surrounding neutral space. In the chapter on TIME we shall=
 see
some modifications to this concept to take into account variations to the v=
alue
of &#8216;t&#8217;. At the moment though assume that &#8216;t&#8217; is a
constant.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The initial
Eteron that provided the compression energy will initially send a propagati=
on
in a specific direction &#8211; here its to the right - however when that
Eteron&#8217;s maintenance force is released it releases energy in the same
direction and over a number of &#8216;t&#8217; periods eventually assumes a
pre-maintenance energy state.<span style=3D'mso-spacerun:yes'>&nbsp; </span=
>This
is the direction the double necklace then travels and it is very similar to=
 a
&#8216;perturbation-zone&#8217;.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>It&#8217;s as if the Eterons influenced by the double necklace shake
twice first in one direction and then the other finishing a single continuo=
us
movement. It is an energy disturbance that passes through Eterons, varying
their energy-state and leaving them in the same place and with the same
energy-state before the disturbance passed. Simply, it is a WAVE.<o:p></o:p=
></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>This neckl=
ace
has the following characteristics:<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:36.0pt;text-align:justify;text-in=
dent:
-18.0pt;tab-stops:36.0pt'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'>1.<span
style=3D'mso-tab-count:1'>&nbsp;&nbsp; </span>The level of energy of one Et=
eron
to the next is different by a constant factor. This factor is proportional =
to
the level of energy of the smallest Eteron by a constant.<o:p></o:p></span>=
</p>

<p class=3DMsoNormal style=3D'text-align:justify;tab-stops:0cm'><span lang=
=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>2. The amo=
unt of
Eterons of every necklace, from the smallest Eteron to the biggest, is
proportional to the inverse of the energy of the smallest Eteron by a const=
ant.
(Constant of necklace)<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'margin-left:36.0pt;text-align:justify;text-in=
dent:
-18.0pt;tab-stops:36.0pt'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'>3.<span
style=3D'mso-tab-count:1'>&nbsp;&nbsp; </span>The total energy of the whole
necklace is proportional to the power of -2 of the necklace&#8217;s length<=
span
style=3D'mso-spacerun:yes'>&nbsp; </span>(E=3Dk.</span><span style=3D'font-=
family:
Symbol'>l</span><sup><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'>&=
#8211;2</span></sup><span
lang=3DEN-US style=3D'mso-ansi-language:EN-US'>).<span
style=3D'mso-spacerun:yes'>&nbsp; </span><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>As a
consequence, if in the Eteronic medium a denser zone is generated it thus s=
eeks
to expand as a wave. The transmission-speed of this wave is at the speed of
light because the transfer of energy from one Eteron to the next takes a ti=
me
of &#8216;t&#8217; and during &#8216;t&#8217; the wave moves one Eteron
diameter. It is this diameter that determines transmission-speed and is at a
maximum when encountering Eterons in very low minimum energy state (they si=
mply
have larger diameters &#8211; they are bigger &#8211; far out into
intergalactic space). Consequently if Eterons of a medium are encountered t=
hat
have previously been compressed (already distorted space) then the speed is
lower (the diameters of the Eteron&#8217;s are smaller for each successive
&#8216;t&#8217;).<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Really,
&#8216;t&#8217; is not constant. It depends on the energy state of the Eter=
on.
It is a direct function of an Eteron&#8217;s internal energy: <o:p></o:p></=
span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;&nbsp;&nbsp;
</span>t =3D E.k <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>wher=
e<span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>&#8216;t&#=
8217;
is the interval, <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;&nbsp;
</span>E is the internal energy of the Eteron and <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;=
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nb=
sp;&nbsp;
</span>k is a constant. <o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>This=
 will
be dealt with in more detail in the chapter on TIME. Previously it stated t=
hat
&#8216;t&#8217; was a static unit but again I have to apologize for this as=
 it
complicated discussion at the time. The value of &#8216;t&#8217; is
proportional to the inverse of the volume of the Eteron. For Eterons that m=
ake
up the normal conducting medium (those that would be at a maximum diameter)=
 it
is practically constant. However if a wave were to pass through a structure,
this value increases, as the case where a structure happens to be near to a=
 star
or travelling at high speed. In both cases Eterons are more compressed and =
as a
result &#8216;t&#8217; is longer.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><i><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Space
torsion-density around a star means an average diminishing of eteron&#8217;s
diameter. &#8220;Average&#8221; means the sum of compressed eterons of the
conducting medium and the compressed eterons of the same gravitons flowing
through that medium.<span style=3D'mso-spacerun:yes'>&nbsp; </span>Eterons =
of
half (average) diameter means an 8 times denser space. Stretching of time is
multiplied by 8 due to density only. That sole phenomenon diminishes speed =
of
light by 8 times.<span style=3D'mso-spacerun:yes'>&nbsp; </span>Value of
&#8220;d&#8221; is half, so speed of light diminishes 16 times. Then
speed-diminishing is v=3Dk/d<sup>2<span style=3D'mso-spacerun:yes'>&nbsp; <=
/span></sup><span
style=3D'mso-spacerun:yes'>&nbsp;</span>where v is speed, d is torsion-dens=
ity
and k is a constant. When Einstein measured the bending of light near to the
Sun he found a double angle regarding the value due to gravity. His hypothe=
sis
was that gravity pulls photons, bending half value of the trajectory, and s=
pace
torsion adds the remaining half. That is to say, bending is double regarding
that caused by gravity. He thought that it is a sum of values. It is not so.
Instead of a function like<span style=3D'mso-spacerun:yes'>&nbsp;&nbsp;
</span>a=3Dg+d<span style=3D'mso-spacerun:yes'>&nbsp; </span>(angle =3D gra=
vity +
density) it is a=3Dd<sup>2</sup><span style=3D'mso-spacerun:yes'>&nbsp;
</span>.<span style=3D'mso-spacerun:yes'>&nbsp; </span>As the observed angle
&#8220;a&#8221; is very small, increasing g and d in both functions, it see=
ms
to be 2g. It is because the derivative function of both gives very similar
values for small increments.<o:p></o:p></span></i></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The
&#8216;increasing&#8217; of &#8216;t&#8217; can be observed only by another
time-system (a neighbouring system). Space distortion is due to the combined
effect of a denser medium and the passing of photons through gravitons. For=
 a
photon, a graviton is only a denser medium. It is as if a photon was refrac=
ted
and an angle shifting of the photon passing near a star is doubled.<span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp; </span><span style=3D'color:r=
ed'><span
style=3D'mso-spacerun:yes'>&nbsp;</span><o:p></o:p></span></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'color:blue;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span><sp=
an
lang=3DEN-US style=3D'mso-ansi-language:EN-US'>Inside the body of a wave, g=
oing
from the end of the necklace to the middle, the &#8216;t&#8217; interval of
each Eteron becomes successively longer. This introduces phase differences.
Along the array, Eterons of the ends experience &#8216;life&#8217; faster t=
han
those of the middle. So, the compression wave must wait in the smaller Eter=
ons.
The average time for the passing of a compression wave through a point in s=
pace
will simulate less compressed Eterons with regard to time of the external
medium. In the case of waves whose length is similar to visible-light-spect=
rum,
this difference is very small. But (as will be seen in chapter on PARTICLES=
) in
the core of a particle there exists Eterons in a very compressed state and =
time
becomes, for lack of a better term, expanded. However, time-expansion is
proportional to the internal energy of the body as a whole. <o:p></o:p></sp=
an></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'color:blue;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;</span></span><span lang=3DEN-US style=3D'=
mso-ansi-language:
EN-US'><span style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp; </span>The
difference of phase (a longer &#8216;t&#8217;) introduces a distortion in t=
he
array generating longitudinal &#8216;shuddering&#8217; and irregularities of
synchronization. Shaking waves exist at many frequency-values. At a given
moment and at a given place a sum of phase-maximums throws out an Eteron. <=
o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The emitted
energy from particles is proportional to the internal energy of both the wa=
ve
and the particle. In turn, the &#8216;thrown&#8217; Eteron expands generati=
ng a
new much longer necklace &#8211; one that has much less energy &#8211; and =
later
a wave. This phenomenon happens within <i>waves and</i> particles. It is a =
kind
of spontaneous emission. The energy emitted by this way is proportional to =
the
energy of the emitter-body, all but a very small part. <o:p></o:p></span></=
p>

<p class=3DMsoNormal style=3D'text-align:justify'><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>In D=
iagram
<st1:metricconverter ProductID=3D"6.3 a" w:st=3D"on">6.3 a</st1:metricconve=
rter>
simplified necklace is presented. Eterons a, g, h and i are in a minimum en=
ergy
state; b and f are the ends of the necklace and d is the smallest Eteron.<o=
:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Up to now
attention has been focused on a single and double </span><span lang=3DEN-US
style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'>necklace.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>In actuality energy transfer also =
occurs
laterally as well as longitudinally.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>Compressed Eterons also seek to expand laterally such that necklaces
also breed laterally sharing energy and form a body like a photon. Such a w=
ave
is a spherical body. Its energy is given by the inverse-square of its lengt=
h.<o:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center;mso-layout-g=
rid-align:
none;text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'><!--[if gte vml 1]><v:shape
 id=3D"_x0000_i1028" type=3D"#_x0000_t75" style=3D'width:159pt;height:173.2=
5pt'>
 <v:imagedata src=3D"6WAVES_archivos/image007.wmz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img width=3D212 height=3D231
src=3D"6WAVES_archivos/image008.gif" v:shapes=3D"_x0000_i1028"><![endif]><o=
:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center;mso-layout-g=
rid-align:
none;text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'>DIAGRAM
6.4</span><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;mso-ansi-la=
nguage:
EN-US'><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Diagram 6.4
represents a sheaf of necklaces that opens ahead like a nosegay. Black spots
represent compressed Eterons and empty circles represent Eterons of the
conducting medium.</span><span lang=3DEN-US style=3D'mso-ansi-language:EN-U=
S'><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The neckla=
ce
along the moving-axis receives maximum pressure. Adjacent lateral necklaces
(going laterally away from the axis) exhibit gradually less energy and seek=
 to
be longer but cannot because the body moves with a governing speed of light.
For these necklaces to be longer implies a propagation higher than the spee=
d of
light therefore lateral necklaces have a gradually diminishing constant. In
other words, the natural Eteron speed limit results in a shortening of these
lateral necklaces causing the structure to be a spherical shape. <o:p></o:p=
></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The total =
energy
of the whole body is always proportional to the energy of the central neckl=
ace.
So, its energy is proportional to the inverse-square of its length. The squ=
are
of one cycle-time by its energy is equal to the constant of Planck. This
behaviour is in accordance with that of matter-waves.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The descri=
bed
wave moves at the speed of light and it exists as an &#8216;individual
body&#8217; in space. It requires a name &#8211; I have named it the GRAVIT=
ON.
A graviton is a sheaf of double necklaces that advances compressing Eteron
along its path. <span style=3D'color:red'><span
style=3D'mso-spacerun:yes'>&nbsp;</span></span><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
color:blue;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;</span></span><span lang=3DEN-US style=3D'=
mso-bidi-font-size:
10.0pt;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Consider t=
he
word &#8220;sweeping&#8221;.<span style=3D'mso-spacerun:yes'>&nbsp; </span>=
Here
sweeping is used to mean, &#8220;Transiently modifying each of the individu=
al
Eteron structures&#8221; as </span><span lang=3DEN-US style=3D'mso-ansi-lan=
guage:
EN-US'><span style=3D'mso-spacerun:yes'>&nbsp;</span></span><span lang=3DEN=
-US
style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'>the wave passes
through. Geometrically, imagine a (circular) surface moving perpendicular to
its plane and as such generating a cylinder. That flat circular surface is a
cut through the centre of a photon and perpendicular to its actual travel w=
hile
the cylinder is the volume where eterons have been transiently affected. <o=
:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The gravit=
on
&#8216;sweeps&#8217;<span style=3D'color:red'> </span>through Eterons but n=
ever
carries them &#8211; it never owns Eterons rather it passes through them
changing their energy state for the duration of passing. After compressing =
and
decompressing Eterons, it leaves each Eteron in its previous place. Each Et=
eron
left at the rear suffers only one effect: it is pushed in the opposite sens=
e to
the movement of the wave. When the wave is sweeping in a specific direction,
the barrier-effect of the Eterons causes an attraction and a net
counter-pushing effect.<span style=3D'mso-spacerun:yes'>&nbsp; </span>That =
is why
a flow of gravitons causes the compression of the conducting medium in the
opposed direction, diminishing Eteronic diameter, shortening objects (of co=
urse
also made up of Eterons) and expansion of time. A star (a planet) emits
gravitons and space around it suffers a space distortion. <o:p></o:p></span=
></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>It is poss=
ible
to say that the counter-pushing effect is proportional to the energy of the
graviton by the internal energy of the crossed body. So, the force is given=
 by
the graviton&#8217;s energy multiplied by the mass of the body. But gravity
interactions are more complex. Gravity and inertia are twins. To understand
gravity we first have to understand inertia.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Supposing =
that
particles are made up of very compressed Eterons and are spherical when
stationary and flattened like a pancake (with the flattened side perpendicu=
lar
to the direction of movement)<span style=3D'color:teal'> </span>when moving.
(Details of these particular structures will be detailed in the chapter on
PARTICLES later).<span style=3D'mso-spacerun:yes'>&nbsp; </span>Unlike phot=
on and
graviton structures, particles must move Eterons out of the way in some way=
 or
other. Now Eteron sweeping implies compression-forces. The simplified proce=
ss
is that compressed Eteron waves are generated in front of the particle. Only
the first half of the necklaces as described above are generated and along =
the
same direction of the movement.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>There is also a partial creation as a &#8216;nosegay&#8217; is creat=
ed.
It is the particle that is creating a half necklace here and does so out fr=
om
the front of the particle. During this first half graviton creation the
particle moves at the speed of light effectively at the same rate as the
compression occurs at the front. When the construction of the first half of=
 the
graviton is completed by the propagation of energy from the front of the
particle to the Eterons in front of it, it must have moved a distance equal=
 to
the total of all the individual compression distance reductions of all the
effected Eterons in the necklaces in front of the particle. This compression
ahead builds necklaces. Necklaces are made up of compressed eterons. The
pressure forces eterons into the particle and to move within it. In fact as=
 the
compression of the front half wave occurs so does the swallowing of Eterons
throughout the front half of the particle.<span style=3D'mso-spacerun:yes'>=
&nbsp;
</span>It is this &#8220;internal current of eterons&#8221; that causes the
particle to move through the Eteronic Medium. The Eteron swallowing is
proportional to the compression-state of eterons at the external
necklace&#8217;s vertex (that is, the particle&#8217;s surface).<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Both phenomena (necklace-building =
and
swallowing) are simultaneous.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
color:blue;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span><sp=
an
lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'>On=
ce this
half creation of a graviton has finished, the particle stops dead: all its
kinetic energy has been used to create this first half graviton. One thing =
has
occurred though.<span style=3D'mso-spacerun:yes'>&nbsp; </span>It has swall=
owed a
number of Eterons and this makes the particles mass greater than if it were=
 at
rest.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The result is that it is
unstable. The second half graviton begins to form but at the back of the
particle and in the opposite direction to the direction of movement. The</s=
pan><span
lang=3DEN-US style=3D'mso-ansi-language:EN-US'> se</span><span lang=3DEN-US
style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'>cond half then =
determines
the moving direction of the wave: crossing the particle directly opposite to
its direction of movement. At the same time the extra mass acquired is thro=
wn
out as it expels compressed eterons. So, a moving particle finishes generat=
ing
a half graviton that then crosses back through the particle as the necklace=
s in
the half graviton move back in the forward direction. As the core of both
bodies, half graviton moving at the speed of light and particle coincide
exactly, the graviton returns all its energy to the particle, fading away a=
nd
returning kinetic energy back to the Eterons of the particle.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>They intern use that energy to cre=
ate
the next front half graviton.<o:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center;mso-layout-g=
rid-align:
none;text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'><!--[if gte vml 1]><v:shape
 id=3D"_x0000_i1029" type=3D"#_x0000_t75" style=3D'width:186.75pt;height:15=
6pt'>
 <v:imagedata src=3D"6WAVES_archivos/image009.wmz" o:title=3D""/>
</v:shape><![endif]--><![if !vml]><img width=3D249 height=3D208
src=3D"6WAVES_archivos/image010.gif" v:shapes=3D"_x0000_i1029"><![endif]><o=
:p></o:p></span></p>

<p class=3DMsoNormal align=3Dcenter style=3D'text-align:center;mso-layout-g=
rid-align:
none;text-autospace:none'><span lang=3DEN-US style=3D'mso-ansi-language:EN-=
US'>DIAGRAM
6.5</span><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;mso-ansi-la=
nguage:
EN-US'><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>Observe Di=
agram
6.5.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The black ellipse of the
centre represents the moving particle. It is an ellipse. The flattening as
referred to earlier is due to the movement. The little arrow (right side)
indicates the direction of movement. The black spots are Eterons making up =
the
and as a consequence graviton and electroid exchange energy. Remembering th=
at
both are inertia-mechanisms of electrons. So, the electron is like an
interphase between waves. Empty circles are Eterons of surrounding medium. =
The
represented wave is a just formed graviton with a &#8216;stopped&#8217;
particle within. Now instead of &#8216;graviton&#8217; in this special case=
 we
would say a &#8220;matter-wave&#8221;. Moreover, I am calling this new conc=
ept
an INTRON. (The &#8216;wave of inertia&#8217;). It is a graviton that lives
only one cycle. It is created by the moving particle and totally absorbed
because both it and the particle&#8217;s cores coincide. It exists to effec=
t a
maximum exchange of energy between both.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>This of co=
urse
indicates other outcomes.<span style=3D'mso-spacerun:yes'>&nbsp; </span>Wha=
t if a
stationary particle is encountered by a graviton?</span><span lang=3DEN-US
style=3D'mso-ansi-language:EN-US'><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>The intera=
ction
is the same, but without the core-coincidence. The energy exchange is
proportional to the inverse-square of the distance between each
structure&#8217;s cores.<span style=3D'mso-spacerun:yes'>&nbsp; </span>The
stationary particle gets an intron that has energy corresponding to the
graviton&#8217;s level of sweeping of the particle.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>The number of gravitons sweeping a=
nd
adding energy to the particle increases its intron to a theoretical level
associated with the number of encounters of gravitons.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>Imagine a ball falling.<span
style=3D'mso-spacerun:yes'>&nbsp; </span>It picks up speed because it encou=
nters
gravitons emitted from the planet.<span style=3D'mso-spacerun:yes'>&nbsp;
</span>It reaches a standard speed because of the air and the resistance
provided by the level of compression of those Eterons in the air molecules.=
<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
color:blue;mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span></span><sp=
an
lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;mso-ansi-language:EN-US'>If=
 the
graviton provides acceleration to a particle, at the same time it will loose
some of its own energy moving away with increased length &#8211; less energy
means less compression and therefore a longer graviton overall. If instead =
it
brakes the particle, it moves away as a shorter wave, having removed energy
from the particle and added it to itself.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>If the par=
ticle
is crossed by a graviton in the same moving direction in such a situation t=
hat
the particle is not braked, it is because something does not allow the part=
icle
to be braked. Then the graviton is pushed and removes energy from the parti=
cle.
(A climbing particle.)<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>If the par=
ticle
is crossed by a graviton moving in exactly the opposite direction to its
direction of movement and the particle is not accelerated it is because
something else does not allow the particle to accelerate. Then the graviton=
 is
&#8216;braked&#8217; and the particle removes energy from the graviton. (A
falling particle.) As the graviton cannot be braked (it always moves at the
speed of light) it lengthens.<span style=3D'mso-spacerun:yes'>&nbsp; </span=
><o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>If we see =
it
from the viewpoint of Doppler-effect, the conclusion is the same. A wave
emitted in the moving direction removes energy from the emitter. A wave emi=
tted
backwards provides energy to the emitter.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>All this w=
ill be
seen in KINETIC ENERGY.<o:p></o:p></span></p>

<p class=3DMsoNormal style=3D'text-align:justify;mso-layout-grid-align:none;
text-autospace:none'><span lang=3DEN-US style=3D'mso-bidi-font-size:10.0pt;
mso-ansi-language:EN-US'><span
style=3D'mso-spacerun:yes'>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; </span>A graviton=
 is
made up of compressed Eterons without strong dipoles. As we have seen in the
previous chapters, a photon is made up of Eterons of equal size but with
dipoles. I apologize again because this is not exactly true. Dipoles of a p=
olar
sheaf can be created inside Eterons regardless of the compression-state.
Somehow compression waves and dipole waves live independently; a graviton c=
an
cross a PSF (polar sheaf field) or an electron (made up of polar sheaves)
without any drama but applying a force on them. Besides, a photon can travel
through mediums of variable densities by only varying its speed. A photon
interacts only with polarized bodies (polar sheaves, electrons, protons, et=
c.).
Photons and gravitons ignore each other. But if a graviton (or an intron)
applies a force on (for example) an electron, the speed variation of that
electron generates an electroid variation between both kind of waves.<o:p><=
/o:p></span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
o:p>&nbsp;</o:p></span></p>

<p class=3DMsoNormal><span lang=3DEN-US style=3D'mso-ansi-language:EN-US'><=
span
style=3D'mso-spacerun:yes'>&nbsp;</span><o:p></o:p></span></p>

</div>

</body>

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