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<div id="yui_3_16_0_ym19_1_1464885429737_3438" class="MsoNormal">Vivian Robinson:</div>

<div id="yui_3_16_0_ym19_1_1464885429737_3436" class="MsoNormal">I suggest the following experiment does separate the
inertial and gravitational aspects of mass. </div>

<div id="yui_3_16_0_ym19_1_1464885429737_3435" class="MsoNormal"> </div>

<div id="yui_3_16_0_ym19_1_1464885429737_3434" class="MsoNormal" style="mso-layout-grid-align:none;text-autospace:none"><span id="yui_3_16_0_ym19_1_1464885429737_3433" style="font-size:11.0pt;font-family:"Courier New"">Diffraction experiment and
its STOE photon simulation program rejects wave models of light <a id="yui_3_16_0_ym19_1_1464885429737_3432" href="http://intellectualarchive.com/?link=item&id=1603">http://intellectualarchive.com/?link=item&id=1603</a>
</span></div>

<div id="yui_3_16_0_ym19_1_1464885429737_3431" class="MsoNormal"> </div>

<div id="yui_3_16_0_ym19_1_1464885429737_3452" class="MsoNormal" style="mso-layout-grid-align:none;text-autospace:none"><span id="yui_3_16_0_ym19_1_1464885429737_3451" style="font-size:11.0pt;font-family:"Courier New"">STOE assumptions that model
particle diffraction and that replaces QM </span></div>

<div id="yui_3_16_0_ym19_1_1464885429737_3455" class="MsoNormal" style="mso-layout-grid-align:none;text-autospace:none"><span id="yui_3_16_0_ym19_1_1464885429737_3454" style="font-size:11.0pt;font-family:"Courier New""><a id="yui_3_16_0_ym19_1_1464885429737_3453" href="http://intellectualarchive.com/?link=item&id=1719">http://intellectualarchive.com/?link=item&id=1719</a>
</span></div>

<div id="yui_3_16_0_ym19_1_1464885429737_3456" class="MsoNormal" style="mso-layout-grid-align:none;text-autospace:none"><span style="font-size:11.0pt;font-family:"Courier New""> </span></div>

<div id="yui_3_16_0_ym19_1_1464885429737_3457" class="MsoNormal">The proposed photon model predicted this experiment. Some of
the required postulates to make the model match experimental observations are
to separate the inertial and gravitational mass. No other model of the photon
or of diffraction fits the observation. </div>

<div id="yui_3_16_0_ym19_1_1464885429737_3458" class="MsoNormal"> </div>

<div id="yui_3_16_0_ym19_1_1464885429737_3459" class="MsoNormal">The diffraction model also explains the “walking drop”
observation of Fig. 5c in <span id="yui_3_16_0_ym19_1_1464885429737_3460" style="mso-fareast-font-family:"MS Mincho"">Bush,~J.W.M.,
2015, <i>The new wave of pilot-wave theory</i>, Physics Today, 68(8), 47</span></div>

<div id="yui_3_16_0_ym19_1_1464885429737_3461" class="MsoNormal"><a id="yui_3_16_0_ym19_1_1464885429737_3462" href="http://newfos.org/sites/default/files/uploads/documents/Pilot_Waves_Phys_Today_Aug_2015.pdf">http://newfos.org/sites/default/files/uploads/documents/Pilot_Waves_Phys_Today_Aug_2015.pdf</a>
</div>

<div id="yui_3_16_0_ym19_1_1464885429737_3463" class="MsoNormal">wherein the inertia of the medium allows the wave to reflect
and influence the drop that caused the wave. Compare Fig. 5c of Bush with Fig.
1 of “<span id="yui_3_16_0_ym19_1_1464885429737_3464" style="mso-bidi-font-size:11.0pt">Diffraction experiment …”</span> </div>

<div id="yui_3_16_0_ym19_1_1464885429737_3465" class="MsoNormal"> </div>

<div id="yui_3_16_0_ym19_1_1464885429737_3466" class="MsoNormal">Hodge</div>

<div id="yui_3_16_0_ym19_1_1464885429737_3467" class="MsoNormal"> </div>

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