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Hi David,<br>
<br>
you are right that there is a lot of theories about gravity. I take
it as an advantage of my model that it directly deduces the law of
gravity introduced by Newton using the known variation of c and the
internal oscillation in elementary particles. And at the same time
it covers the relativistic aspects of gravity.<br>
<br>
Sincerely<br>
Albrecht<br>
<br>
<br>
<div class="moz-cite-prefix">Am 13.09.2015 um 18:31 schrieb
<a class="moz-txt-link-abbreviated" href="mailto:davidmathes8@yahoo.com">davidmathes8@yahoo.com</a>:<br>
</div>
<blockquote
cite="mid:252353381.1751005.1442161895997.JavaMail.yahoo@mail.yahoo.com"
type="cite">
<div style="color:#000; background-color:#fff;
font-family:HelveticaNeue, Helvetica Neue, Helvetica, Arial,
Lucida Grande, sans-serif;font-size:16px">
<div id="yui_3_16_0_1_1442160914595_10566"><span>John D</span></div>
<div id="yui_3_16_0_1_1442160914595_10565"><br>
</div>
<div id="yui_3_16_0_1_1442160914595_9962">I'm not so sure this
is unique or the first. Various theories GEM, EGM and so on
have attempted to explain gravity. </div>
<div id="yui_3_16_0_1_1442160914595_9962"><br>
</div>
<div id="yui_3_16_0_1_1442160914595_9962" dir="ltr">The Poynting
Vector, <b>S</b> = <b>E</b> X <b>M</b>, is well established
science. In a peer reviewed paper, the Poynting vector is
considered to be directly proportional to gravity. Murad and
Brandenburg published...</div>
<div id="yui_3_16_0_1_1442160914595_9962" dir="ltr"><br>
</div>
<div id="yui_3_16_0_1_1442160914595_9962" dir="ltr"><a
moz-do-not-send="true"
href="http://www.ovaltech.ca/pdfss/The_Murad-Brandenburg_Equation.pdf"
id="yui_3_16_0_1_1442160914595_10559"><a class="moz-txt-link-freetext" href="http://www.ovaltech.ca/pdfss/The_Murad-Brandenburg_Equation.pdf">http://www.ovaltech.ca/pdfss/The_Murad-Brandenburg_Equation.pdf</a></a><br>
</div>
<div id="yui_3_16_0_1_1442160914595_9962" dir="ltr"><a
moz-do-not-send="true"
href="http://arc.aiaa.org/doi/abs/10.2514/6.2012-997"
id="yui_3_16_0_1_1442160914595_10703">The Murad-Brandenburg
Equation - A Wave Partial Differential Conservation
Expression for the Poynting Vector/Field (AIAA)</a></div>
<div id="yui_3_16_0_1_1442160914595_9962" dir="ltr"><br>
</div>
<div id="yui_3_16_0_1_1442160914595_9962" dir="ltr">David</div>
<br>
<blockquote style="border-left: 2px solid rgb(16, 16, 255);
margin-left: 5px; margin-top: 5px; padding-left: 5px;"
id="yui_3_16_0_1_1442160914595_9853">
<div style="font-family: HelveticaNeue, Helvetica Neue,
Helvetica, Arial, Lucida Grande, sans-serif; font-size:
16px;" id="yui_3_16_0_1_1442160914595_9852">
<div style="font-family: HelveticaNeue, Helvetica Neue,
Helvetica, Arial, Lucida Grande, sans-serif; font-size:
16px;" id="yui_3_16_0_1_1442160914595_9851">
<div dir="ltr" id="yui_3_16_0_1_1442160914595_9960">
<hr id="yui_3_16_0_1_1442160914595_10316" size="1"> <font
id="yui_3_16_0_1_1442160914595_9961" size="2"
face="Arial"> <b><span style="font-weight:bold;">From:</span></b>
John Duffield <a class="moz-txt-link-rfc2396E" href="mailto:johnduffield@btconnect.com"><johnduffield@btconnect.com></a><br>
<b><span style="font-weight: bold;">To:</span></b>
<a class="moz-txt-link-abbreviated" href="mailto:phys@a-giese.de">phys@a-giese.de</a>; 'Nature of Light and Particles -
General Discussion'
<a class="moz-txt-link-rfc2396E" href="mailto:general@lists.natureoflightandparticles.org"><general@lists.natureoflightandparticles.org></a> <br>
<b><span style="font-weight: bold;">Sent:</span></b>
Sunday, September 13, 2015 8:08 AM<br>
<b><span style="font-weight: bold;">Subject:</span></b>
Re: [General] research papers<br>
</font> </div>
<div class="y_msg_container"
id="yui_3_16_0_1_1442160914595_9850"><br>
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<div id="yui_3_16_0_1_1442160914595_9849">
<div class="yiv2986337547WordSection1"
id="yui_3_16_0_1_1442160914595_9848">
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_9912"><span
style="color:#1F497D;">All:</span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_9956"><span
style="color:#1F497D;"> </span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_9847"><span
style="color:#1F497D;"
id="yui_3_16_0_1_1442160914595_9959">Make sure
you check out <a moz-do-not-send="true"
rel="nofollow" shape="rect" target="_blank"
href="http://www.ag-physics.org/gravity/">Albrecht’s
website</a> re things like gravity. </span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_9957"><span
style="color:#1F497D;"> </span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_9958"><span
style="color:#1F497D;"> </span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10284"><span
style="color:#1F497D;"
id="yui_3_16_0_1_1442160914595_10283"><img
moz-do-not-send="true"
id="yiv2986337547Picture_x0020_1"
src="cid:qImAmwTEmG9sIFWT92bd"
data-id="3873138e-c13c-8bf0-fd61-e2ca3c61da55"
class="" height="250" width="417" border="0"></span><span
style="color:#1F497D;"></span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10296"><span
style="color:#1F497D;"> </span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10297"><span
style="color:#1F497D;"
id="yui_3_16_0_1_1442160914595_10378">I might
express things slightly differently, but I
think the general idea expressed by Albrecht
is essentially correct. And I don’t anybody
who described this before he did. </span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10298"><span
style="color:#1F497D;"> </span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10299"><span
style="color:#1F497D;"
id="yui_3_16_0_1_1442160914595_10978">Regards</span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10300"><span
style="color:#1F497D;">John Duffield</span></div>
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10301"><span
style="color:#1F497D;"> </span></div>
<div class="qtdSeparateBR"><br>
<br>
</div>
<div class="yiv2986337547yqt5888902496"
id="yiv2986337547yqt46200">
<div id="yui_3_16_0_1_1442160914595_10305">
<div style="border:none;border-top:solid
#E1E1E1 1.0pt;padding:3.0pt 0cm 0cm 0cm;"
id="yui_3_16_0_1_1442160914595_10304">
<div class="yiv2986337547MsoNormal"
id="yui_3_16_0_1_1442160914595_10303"><b><span
style="color:windowtext;" lang="EN-US">From:</span></b><span
style="color:windowtext;"
id="yui_3_16_0_1_1442160914595_10302"
lang="EN-US"> General
[<a class="moz-txt-link-freetext" href="mailto:general-bounces+johnduffield=btconnect.com@lists.natureoflightandparticles.org">mailto:general-bounces+johnduffield=btconnect.com@lists.natureoflightandparticles.org</a>]
<b>On Behalf Of </b>Dr. Albrecht Giese<br
clear="none">
<b>Sent:</b> 11 September 2015 17:52<br
clear="none">
<b>To:</b>
<a class="moz-txt-link-abbreviated" href="mailto:general@lists.natureoflightandparticles.org">general@lists.natureoflightandparticles.org</a><br
clear="none">
<b>Subject:</b> Re: [General] research
papers</span></div>
</div>
</div>
<div class="yiv2986337547MsoNormal"> </div>
<div class="yiv2986337547MsoNormal">Dear John
Macken,<br clear="none">
<br clear="none">
I would like to answer a specific topic in
your mail below. You write "... would have
particular relevance to the concept that the
Higgs field is needed to give inertia to
fermions".<br clear="none">
<br clear="none">
We should not overlook that even mainstream
physicists working on elementary particles
admit that the Higgs theory is not able to
explain inertia. I give you as a reference: <span
style="font-size:12.0pt;"></span></div>
<div class="yiv2986337547MsoNormal"
style="margin-right:0cm;margin-bottom:3.0pt;margin-left:0cm;text-align:justify;">>Steven
D. Brass, The cosmological constant puzzle,
Journal of Physics G, Nuclear and Particle
Physics 38, 4(2011) 43201< ,</div>
<div class="yiv2986337547MsoNormal"
style="margin-bottom:12.0pt;"><span
style="font-size:12.0pt;">which has the
result that the Higgs field, which causes
inertia according to the theory, is by at
least 56 orders of magnitude too small to
explain the mass of the elementary
particles. (Another weakness is the fact
that the Higgs theory does not tell us the
mass of any elementary particle even if all
other parameters are known.)<br clear="none">
<br clear="none">
As you may remember, in our meeting I have
presented a model explaining inertia which
does not only work as a general idea but
provides very precise results for the mass
of leptons. The mass is classically deduced
from the size of a particle. It also
explains the mass of quarks, but here the
verification is more difficult, due to the
lack of measurements. In addition I have
shown that the model also explains the
(dynamic) mass of photons, if the size of a
photon is related to its wavelength. <br
clear="none">
<br clear="none">
You may find details in the proceedings of
our San Diego meeting, but also on the
following web sites:<br clear="none">
<br clear="none">
<a moz-do-not-send="true" rel="nofollow"
shape="rect" target="_blank"
href="http://www.ag-physics.org/rmass">www.ag-physics.org/rmass</a><br
clear="none">
<a moz-do-not-send="true" rel="nofollow"
shape="rect" target="_blank"
href="http://www.ag-physics.org/electron">www.ag-physics.org/electron</a>
.<br clear="none">
<br clear="none">
You may also find the sites by Google search
entering the string "origin of mass". You
will find it on position 1 or 2 of the list,
where it has constantly been during the past
12 years.<br clear="none">
<br clear="none">
If you have any questions about it, please
ask me. I will be happy about any
discussion.<br clear="none">
<br clear="none">
With best regards<br clear="none">
Albrecht Giese<br clear="none">
<br clear="none">
</span></div>
<div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:12.0pt;">Am 04.09.2015 um
18:40 schrieb John Macken:</span></div>
</div>
<blockquote
style="margin-top:5.0pt;margin-bottom:5.0pt;">
<div class="yiv2986337547MsoNormal"><span
style="font-size:12.0pt;">Martin,</span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:12.0pt;"> </span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:12.0pt;">I wanted to
remind you that I think that you should
update your article “Light Is Heavy” to
include the mathematical proof that
confined light has exactly the same
inertia as particles with equal energy.
Accelerating a reflecting box causes
different photon pressure which results in
a net inertial force. I already reference
your Light Is Heavy article in my book,
but expanding the article would be even
better. An expanded article would have
particular relevance to the concept that
the Higgs field is needed to give inertia
to fermions. The Higgs field is not needed
to give inertia to confined light.
Furthermore, confined light exerts exactly
the correct inertia and kinetic energy,
even at relativistic conditions. I have
not seen a proof that the Higgs field
gives exactly the correct amount of
inertia or kinetic energy to fermions.
Any particle model that includes either a
confined photon or confined waves in
spacetime propagating at the speed of
light gets inertia and kinetic energy from
the same principles as confined light in a
reflecting box.</span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:12.0pt;"> </span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:12.0pt;">John M. </span></div>
<div>
<div style="border:none;border-top:solid
#E1E1E1 1.0pt;padding:3.0pt 0cm 0cm 0cm;">
<div class="yiv2986337547MsoNormal"><b>From:</b>
General [<a moz-do-not-send="true"
rel="nofollow" shape="rect"
ymailto="mailto:general-bounces+john=macken.com@lists.natureoflightandparticles.org"
target="_blank"
href="mailto:general-bounces+john=macken.com@lists.natureoflightandparticles.org">mailto:general-bounces+john=macken.com@lists.natureoflightandparticles.org</a>]
<b>On Behalf Of </b>Mark, Martin van
der<br clear="none">
<b>Sent:</b> Friday, September 04, 2015
6:34 AM<br clear="none">
<b>To:</b> Nature of Light and Particles
- General Discussion <a
moz-do-not-send="true" rel="nofollow"
shape="rect"
ymailto="mailto:general@lists.natureoflightandparticles.org"
target="_blank"
href="mailto:general@lists.natureoflightandparticles.org"><a class="moz-txt-link-rfc2396E" href="mailto:general@lists.natureoflightandparticles.org"><general@lists.natureoflightandparticles.org></a></a><br
clear="none">
<b>Subject:</b> [General] research
papers</div>
</div>
</div>
<div class="yiv2986337547MsoNormal"> </div>
<div class="yiv2986337547MsoNormal"
style="margin-bottom:10.0pt;"><span
style="color:#1F497D;">Dear all,</span></div>
<div class="yiv2986337547MsoNormal"
style="margin-bottom:10.0pt;"><span
style="color:#1F497D;">My recent (and old)
work can be found on Researchgate:</span></div>
<div class="yiv2986337547MsoNormal"
style="margin-bottom:10.0pt;"><span
style="color:#1F497D;"><a
moz-do-not-send="true" rel="nofollow"
shape="rect" target="_blank"
href="https://www.researchgate.net/profile/Martin_Van_der_Mark/publications"><a class="moz-txt-link-freetext" href="https://www.researchgate.net/profile/Martin_Van_der_Mark/publications">https://www.researchgate.net/profile/Martin_Van_der_Mark/publications</a></a></span></div>
<div class="yiv2986337547MsoNormal"
style="margin-bottom:10.0pt;"><span
style="color:#1F497D;">In particular you
will find the most recent work:</span></div>
<ul style="margin-top:0cm;" type="disc">
<li class="yiv2986337547MsoNormal"
style="color:#1F497D;margin-bottom:10.0pt;">On
the nature of “stuff” and the hierarchy of
forces</li>
<li class="yiv2986337547MsoNormal"
style="color:#1F497D;margin-bottom:10.0pt;">Quantum
mechanical probability current as
electromagnetic 4-current from topological
EM fields</li>
</ul>
<div class="yiv2986337547MsoNormal"
style="margin-bottom:10.0pt;"><span
style="color:#1F497D;">Very best regards,</span></div>
<div class="yiv2986337547MsoNormal"
style="margin-bottom:10.0pt;"><span
style="color:#1F497D;">Martin</span></div>
<div class="yiv2986337547MsoNormal"> </div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:10.0pt;" lang="DE">Dr.
Martin B. van der Mark</span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:10.0pt;">Principal
Scientist, Minimally Invasive Healthcare</span></div>
<div class="yiv2986337547MsoNormal"><span
style="color:navy;"> </span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:10.0pt;">Philips Research
Europe - Eindhoven</span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:10.0pt;">High Tech
Campus, Building 34 (WB2.025)</span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:10.0pt;">Prof. Holstlaan
4</span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:10.0pt;">5656 AE
Eindhoven, The Netherlands</span></div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:10.0pt;">Tel: +31 40
2747548</span></div>
<div class="yiv2986337547MsoNormal"> </div>
<div class="yiv2986337547MsoNormal"><span
style="font-size:12.0pt;"> </span></div>
<div class="yiv2986337547MsoNormal"
style="text-align:center;" align="center"><span
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