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	<title>Comments for Hidden Dimensions</title>
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	<link>http://phiphy.wordpress.com</link>
	<description>Phiphy&#039;s Physics Study Notes</description>
	<lastBuildDate>Fri, 09 Oct 2009 20:21:39 +0000</lastBuildDate>
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		<title>Comment on QFT Journal Club 2: Propagator Theory by Dale B. Ritter, B.A.</title>
		<link>http://phiphy.wordpress.com/2009/10/08/qft-journal-club-2-propagator-theory/#comment-29</link>
		<dc:creator>Dale B. Ritter, B.A.</dc:creator>
		<pubDate>Fri, 09 Oct 2009 20:21:39 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/?p=96#comment-29</guid>
		<description>&quot;QFT Journal Club 2: Propagator Theory&quot; has the right stuff.  Using relative quantum waveparticle mapping methods with the boundary values for a spacetime manifold as gravity and time a system has been developed producing the picotoctometric, 3D, interactive video atomic model imaging function.  This includes quantum symmetry numbers distributed along a series differential.
  The atom&#039;s RQT (relative quantum topological) data point imaging function is built by combination of the relativistic Einstein-Lorenz transform functions for time, mass, and energy with the workon quantized electromagnetic wave equations for frequency and wavelength.  The atom labeled psi (Z) pulsates at the frequency {Nhu=e/h} by cycles of {e=m(c^2)} transformation of nuclear surface mass to forcons with joule values, followed by nuclear force absorption.  This radiation process is limited only by spacetime boundaries of {Gravity-Time}, where gravity is the force binding space to psi, forming the GT integral atomic wavefunction.  The expression is defined as the series expansion differential of nuclear output rates with quantum symmetry numbers assigned along the progression to give topology to the solutions.
  Next, the correlation function for the manifold of internal heat capacity particle 3D functions is extracted by rearranging the total internal momentum function to the photon gain rule and integrating it for GT limits.  This produces a series of 26 topological waveparticle functions of the five classes; {+Positron, Workon, Thermon, -Electromagneton, Magnemedon}, each the 3D data image of a type of energy intermedon of the 5/2 kT J internal energy cloud, accounting for all of them.  
  Those energy data values intersect the sizes of the fundamental physical constants:  h, h-bar, delta, nuclear magneton, beta magneton, k (series).  They quantize nuclear dynamics by acting as fulcrum particles.  The result is the picoyoctometric, 3D, interactive video atomic model data point imaging function, responsive to keyboard input of virtual photon gain events by relativistic, quantized shifts of electron, force, and energy field states and positions.
  Images of the h-bar magnetic energy waveparticle of ~175 picoyoctometers are available online at http://www.symmecon.com with the complete RQT atomic modeling guide titled The Crystalon Door, copyright TXu1-266-788.  TCD conforms to the unopposed motion of disclosure in U.S. District (NM) Court of 04/02/2001 titled The Solution to the Equation of Schrodinger.</description>
		<content:encoded><![CDATA[<p>&#8220;QFT Journal Club 2: Propagator Theory&#8221; has the right stuff.  Using relative quantum waveparticle mapping methods with the boundary values for a spacetime manifold as gravity and time a system has been developed producing the picotoctometric, 3D, interactive video atomic model imaging function.  This includes quantum symmetry numbers distributed along a series differential.<br />
  The atom&#8217;s RQT (relative quantum topological) data point imaging function is built by combination of the relativistic Einstein-Lorenz transform functions for time, mass, and energy with the workon quantized electromagnetic wave equations for frequency and wavelength.  The atom labeled psi (Z) pulsates at the frequency {Nhu=e/h} by cycles of {e=m(c^2)} transformation of nuclear surface mass to forcons with joule values, followed by nuclear force absorption.  This radiation process is limited only by spacetime boundaries of {Gravity-Time}, where gravity is the force binding space to psi, forming the GT integral atomic wavefunction.  The expression is defined as the series expansion differential of nuclear output rates with quantum symmetry numbers assigned along the progression to give topology to the solutions.<br />
  Next, the correlation function for the manifold of internal heat capacity particle 3D functions is extracted by rearranging the total internal momentum function to the photon gain rule and integrating it for GT limits.  This produces a series of 26 topological waveparticle functions of the five classes; {+Positron, Workon, Thermon, -Electromagneton, Magnemedon}, each the 3D data image of a type of energy intermedon of the 5/2 kT J internal energy cloud, accounting for all of them.<br />
  Those energy data values intersect the sizes of the fundamental physical constants:  h, h-bar, delta, nuclear magneton, beta magneton, k (series).  They quantize nuclear dynamics by acting as fulcrum particles.  The result is the picoyoctometric, 3D, interactive video atomic model data point imaging function, responsive to keyboard input of virtual photon gain events by relativistic, quantized shifts of electron, force, and energy field states and positions.<br />
  Images of the h-bar magnetic energy waveparticle of ~175 picoyoctometers are available online at <a href="http://www.symmecon.com" rel="nofollow">http://www.symmecon.com</a> with the complete RQT atomic modeling guide titled The Crystalon Door, copyright TXu1-266-788.  TCD conforms to the unopposed motion of disclosure in U.S. District (NM) Court of 04/02/2001 titled The Solution to the Equation of Schrodinger.</p>
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		<title>Comment on QFT Journal Club 1: Groups and Group Representations in Physics by Math World &#124; QFT Journal Club 1: Group and Group Representation Theory in &#8230;</title>
		<link>http://phiphy.wordpress.com/2009/09/20/qft-journal-club-1-group-and-group-representation-theory-in-physics/#comment-25</link>
		<dc:creator>Math World &#124; QFT Journal Club 1: Group and Group Representation Theory in &#8230;</dc:creator>
		<pubDate>Mon, 21 Sep 2009 07:24:40 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/?p=80#comment-25</guid>
		<description>[...] Here is the original: QFT Journal Club 1: Group and Group Representation Theory in &#8230; [...]</description>
		<content:encoded><![CDATA[<p>[...] Here is the original: QFT Journal Club 1: Group and Group Representation Theory in &#8230; [...]</p>
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		<title>Comment on latex test by pekingli</title>
		<link>http://phiphy.wordpress.com/2007/11/12/latex-test/#comment-13</link>
		<dc:creator>pekingli</dc:creator>
		<pubDate>Wed, 14 Nov 2007 22:41:52 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/11/12/latex-test/#comment-13</guid>
		<description>any idea how to do this on Hopkins weblog?</description>
		<content:encoded><![CDATA[<p>any idea how to do this on Hopkins weblog?</p>
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		<title>Comment on latex test by phiphy</title>
		<link>http://phiphy.wordpress.com/2007/11/12/latex-test/#comment-11</link>
		<dc:creator>phiphy</dc:creator>
		<pubDate>Mon, 12 Nov 2007 20:04:48 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/11/12/latex-test/#comment-11</guid>
		<description>test latex in the comments.
$latex i\hbar\frac{\partial}{\partial t}\left&#124;\Psi(t)\right&gt;=H\left&#124;\Psi(t)\right&gt;$
There we go. Great!
</description>
		<content:encoded><![CDATA[<p>test latex in the comments.<br />
<img src='http://l.wordpress.com/latex.php?latex=i%5Chbar%5Cfrac%7B%5Cpartial%7D%7B%5Cpartial+t%7D%5Cleft%7C%5CPsi%28t%29%5Cright%3E%3DH%5Cleft%7C%5CPsi%28t%29%5Cright%3E&#038;bg=fafcff&#038;fg=2a2a2a&#038;s=0' alt='i\hbar\frac{\partial}{\partial t}\left|\Psi(t)\right&gt;=H\left|\Psi(t)\right&gt;' title='i\hbar\frac{\partial}{\partial t}\left|\Psi(t)\right&gt;=H\left|\Psi(t)\right&gt;' class='latex' /><br />
There we go. Great!</p>
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		<title>Comment on 旧文重贴——A fantastic week by kiethope</title>
		<link>http://phiphy.wordpress.com/2007/07/03/%e6%97%a7%e6%96%87%e9%87%8d%e8%b4%b4%e2%80%94%e2%80%94a-fantastic-week/#comment-7</link>
		<dc:creator>kiethope</dc:creator>
		<pubDate>Mon, 27 Aug 2007 06:05:38 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/07/03/%e6%97%a7%e6%96%87%e9%87%8d%e8%b4%b4%e2%80%94%e2%80%94a-fantastic-week/#comment-7</guid>
		<description>越来越觉得wordpress的良好感觉了

其实这样分开也挺好的</description>
		<content:encoded><![CDATA[<p>越来越觉得wordpress的良好感觉了</p>
<p>其实这样分开也挺好的</p>
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		<title>Comment on 旧文重贴——A fantastic week by phiphy</title>
		<link>http://phiphy.wordpress.com/2007/07/03/%e6%97%a7%e6%96%87%e9%87%8d%e8%b4%b4%e2%80%94%e2%80%94a-fantastic-week/#comment-6</link>
		<dc:creator>phiphy</dc:creator>
		<pubDate>Tue, 14 Aug 2007 13:29:13 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/07/03/%e6%97%a7%e6%96%87%e9%87%8d%e8%b4%b4%e2%80%94%e2%80%94a-fantastic-week/#comment-6</guid>
		<description>对。这里主要是物理，搜狐是些杂七杂八的东西。</description>
		<content:encoded><![CDATA[<p>对。这里主要是物理，搜狐是些杂七杂八的东西。</p>
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		<title>Comment on 旧文重贴——A fantastic week by kiethope</title>
		<link>http://phiphy.wordpress.com/2007/07/03/%e6%97%a7%e6%96%87%e9%87%8d%e8%b4%b4%e2%80%94%e2%80%94a-fantastic-week/#comment-5</link>
		<dc:creator>kiethope</dc:creator>
		<pubDate>Tue, 14 Aug 2007 11:53:27 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/07/03/%e6%97%a7%e6%96%87%e9%87%8d%e8%b4%b4%e2%80%94%e2%80%94a-fantastic-week/#comment-5</guid>
		<description>至少还能听懂一部分啊，差距，严重的差距

这里是学习笔记，sohu还继续更新哈？：）</description>
		<content:encoded><![CDATA[<p>至少还能听懂一部分啊，差距，严重的差距</p>
<p>这里是学习笔记，sohu还继续更新哈？：）</p>
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		<title>Comment on 大牛现身 by phiphy</title>
		<link>http://phiphy.wordpress.com/2007/08/01/%e5%a4%a7%e7%89%9b%e7%8e%b0%e8%ba%ab/#comment-4</link>
		<dc:creator>phiphy</dc:creator>
		<pubDate>Tue, 14 Aug 2007 04:01:26 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/08/01/%e5%a4%a7%e7%89%9b%e7%8e%b0%e8%ba%ab/#comment-4</guid>
		<description>恩，好像以前在国内的时候确实上不了wordpress。无论是wordpress还是blogger都比国内那些花花架子博客好用得多，居然还要封，不知道那些人是怎么想的。再封我也懒得搬了。</description>
		<content:encoded><![CDATA[<p>恩，好像以前在国内的时候确实上不了wordpress。无论是wordpress还是blogger都比国内那些花花架子博客好用得多，居然还要封，不知道那些人是怎么想的。再封我也懒得搬了。</p>
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		<title>Comment on 大牛现身 by Yin Zhangqi</title>
		<link>http://phiphy.wordpress.com/2007/08/01/%e5%a4%a7%e7%89%9b%e7%8e%b0%e8%ba%ab/#comment-3</link>
		<dc:creator>Yin Zhangqi</dc:creator>
		<pubDate>Tue, 14 Aug 2007 02:57:42 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/08/01/%e5%a4%a7%e7%89%9b%e7%8e%b0%e8%ba%ab/#comment-3</guid>
		<description>Wordpress 也被封了一年半，刚刚解封的。希望以后不要被封禁。</description>
		<content:encoded><![CDATA[<p>WordPress 也被封了一年半，刚刚解封的。希望以后不要被封禁。</p>
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		<title>Comment on POE problems by Yi Wang</title>
		<link>http://phiphy.wordpress.com/2007/04/23/poe-problems/#comment-2</link>
		<dc:creator>Yi Wang</dc:creator>
		<pubDate>Fri, 25 May 2007 13:36:00 +0000</pubDate>
		<guid isPermaLink="false">http://phiphy.wordpress.com/2007/04/23/poe-problems/#comment-2</guid>
		<description>I wrote a e-mail to your gmail account. With my best regards.</description>
		<content:encoded><![CDATA[<p>I wrote a e-mail to your gmail account. With my best regards.</p>
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