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	<title>Moishe Garfinkle      Innovation Blog</title>
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		<title>Moishe Garfinkle      Innovation Blog</title>
		<link>http://garfinkle.wordpress.com</link>
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		<title>SCANNING TOMOGRAPHICAL IMAGING INSTRUMENT</title>
		<link>http://garfinkle.wordpress.com/2009/05/10/scanning-tomographical-imaging-instrument-2/</link>
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		<pubDate>Sun, 10 May 2009 16:57:04 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
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		<description><![CDATA[Disclosed herein is a conceptual description of a rectangular-aperture astronomical telescope denoted theScanning Tomographical Imaging Instrument (STII) utilizing orthogonal plano-conical mirrors figured by servomechanical actuators. The sectored reflectors of the STII are fully figured in situ. Accordingly the STII constitutes a decided break with the a priori figured circular aperture upon which astronomical telescopes have relied for some four centuries. [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=203&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>Disclosed herein is a conceptual description of a rectangular-aperture astronomical telescope denoted the<em>Scanning Tomographical Imaging Instrument </em>(STII) utilizing orthogonal plano-conical mirrors figured by servomechanical actuators. The sectored reflectors of the STII are fully figured <em>in situ.</em> Accordingly the STII constitutes a decided break with the <em>a priori </em>figured circular aperture upon which astronomical telescopes have relied for some four centuries. Auspiciously, developments in current materials, mechanics and electronics have progressed so far that the most advanced concepts are probably beyond the technological needs of the STII. Because of its linear construction very large increases in extent and resolution are decidedly practical as compared to circular apertures now under consideration or construction. Orbital, lunar and terrestrial mountings are discussed in detail.</p>
<p style="text-align:center;"><a href="http://www.pages.drexel.edu/~garfinkm/Scope.html" target="_blank">For Full STII Details</a></p>
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		<title>SCANNING TOMOGRAPHICAL IMAGING INSTRUMENT</title>
		<link>http://garfinkle.wordpress.com/2009/05/10/scanning-tomographical-imaging-instrument/</link>
		<comments>http://garfinkle.wordpress.com/2009/05/10/scanning-tomographical-imaging-instrument/#comments</comments>
		<pubDate>Sun, 10 May 2009 16:56:36 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
				<category><![CDATA[1]]></category>

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		<description><![CDATA[Disclosed herein is a conceptual description of a rectangular-aperture astronomical telescope denoted theScanning Tomographical Imaging Instrument (STII) utilizing orthogonal plano-conical mirrors figured by servomechanical actuators. The sectored reflectors of the STII are fully figured in situ. Accordingly the STII constitutes a decided break with the a priori figured circular aperture upon which astronomical telescopes have relied for some four centuries. [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=200&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>Disclosed herein is a conceptual description of a rectangular-aperture astronomical telescope denoted the<em>Scanning Tomographical Imaging Instrument </em>(STII) utilizing orthogonal plano-conical mirrors figured by servomechanical actuators. The sectored reflectors of the STII are fully figured <em>in situ.</em> Accordingly the STII constitutes a decided break with the <em>a priori </em>figured circular aperture upon which astronomical telescopes have relied for some four centuries. Auspiciously, developments in current materials, mechanics and electronics have progressed so far that the most advanced concepts are probably beyond the technological needs of the STII. Because of its linear construction very large increases in extent and resolution are decidedly practical as compared to circular apertures now under consideration or construction. Orbital, lunar and terrestrial mountings are discussed in detail.</p>
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		<title>PROPRIETARY MULTIFUNCTIONAL TELECOMMUNICATION ADDRESSING SYSTEM</title>
		<link>http://garfinkle.wordpress.com/2009/05/10/proprietary-multifunctional-telecommunication-addressing-system/</link>
		<comments>http://garfinkle.wordpress.com/2009/05/10/proprietary-multifunctional-telecommunication-addressing-system/#comments</comments>
		<pubDate>Sun, 10 May 2009 16:30:51 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
				<category><![CDATA[1]]></category>

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		<description><![CDATA[A dilemma has arisen in telecommunications because of the explosion of required telecommunication addresses, from ordinary telephone service to cellular, facsimile, modems and the like. Our remedy is an advanced revenue-enhancing solution that increase the functionality of telephone addresses now in use by employing the proprietary Multifunctional Telecommunication Addressing System. _________________________________________________________ This telecommunication addressing predicament [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=188&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p>A dilemma has arisen in telecommunications because of the explosion of required telecommunication addresses, from ordinary telephone service to cellular, facsimile, modems and the like.</p>
<p>Our remedy is an advanced revenue-enhancing solution that increase the functionality of telephone addresses now in use by employing the proprietary Multifunctional Telecommunication Addressing System.</p>
<p>_________________________________________________________</p>
<p>This telecommunication addressing predicament has arisen because the number of addresses requested for ancillary devices such as facsimile machines, cellular phones, modems and so forth has greatly outnumbered the anticipated increase in requested addresses, a projection based on plain old telephone service.</p>
<p>Rather than increasing the number of available telephone addresses, or as at present doing away with geographic-based area codes, a fully NANP-compatible patented addressing protocol is disclosed herein that increases the functionality of the available addresses already in service. This simple and convenient Multifunctional Telecommunication Addressing System (MTAS) solely requires reprogramming of the existing switching system without disturbing ordinary telephone service.</p>
<p>According to the MTAS protocol the symbols <span style="color:#ff0000;">*</span> and <span style="color:#ff0000;">#</span> act as mnemonic place markers specific to the device being accessed. These are combined specifically as doublets or triplets.</p>
<p>Using marker doublets for example a subscriber with the primary or base address</p>
<p style="text-align:center;">(xyz) 321-1234</p>
<p style="text-align:left;">can request independent sub-addresses using the MTAS</p>
<p style="text-align:center;">(xyz) 321<span style="color:#ff0000;">** </span>1234  facsimile</p>
<p style="text-align:center;">(xyz) 321<span style="color:#ff0000;">##</span>1234  cellular</p>
<p style="text-align:center;">(xyz) 321<span style="color:#ff0000;">*#</span>1234  pager</p>
<p style="text-align:center;">(xyz) 321<span style="color:#ff0000;">*#</span>1234  &#8212;</p>
<p>with each sub-address operating autonomously and when required simultaneously, releasing for reuse the telephone addresses that had been originally assigned to these devices.</p>
<p>At a time when subscribers are being inundated by telecommunication devices, each requiring a separate address, the need for MTAS increases. The simple convenience of using a single base address rather than addresses for each device is very attractive to subscribers.</p>
<p>MTAS will be particularly amenable to address portability. Applying portability to the base address will carry with it all of its associated sub-addresses.</p>
<p>For special services triple symbols are provided by MTAS.   As an example of MTAS flexibility the triplet symbols ### embedded in the telephone addresses of agreeable subscribers would automatically reverse charges, eliminating the need for WATS services. Generally however triplet symbols are used for automatically dialed services such as reading of utility meters, fire or burglary alert systems, and so on.</p>
<p>MTAS services would be provided by the Local Exchange Carrier. The MTAS service would</p>
<ul>
<li>be highly convenient to subscribers,</li>
<li>increase the number of available telephone addresses, and</li>
<li>constitute a profit center for Exchange Carriers.</li>
</ul>
<p>After implementation MTAS has no effect on plain telephone service. MTAS is invisible until users subscribe to its services from their Local Exchange Carrier, much as users subscribe to Call Forwarding or Caller ID, but with rate schedules specific to the service provided.Consequently simple reprogramming telecommunication switching for MTAS will not affect operating telecommunication services. Hardware modifications are not required.</p>
<p>All of the options provided by MTAS are functional for each subscriber, but it is the subscriber&#8217;s decision through the Local Exchange Carrier as to whether or not to activate the appropriate MTAS function.</p>
<p> </p>
<p style="text-align:center;"><a href="http://www.pages.drexel.edu/~garfinkm/Dialtone.html" target="_blank">Visit Full Proprietary Concep</a>t</p>
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			<media:title type="html">garfinkle</media:title>
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		<title>FORENSIC COMPONENT FAILURE ANALYSIS</title>
		<link>http://garfinkle.wordpress.com/2009/05/09/forensic-component-failure-analysis/</link>
		<comments>http://garfinkle.wordpress.com/2009/05/09/forensic-component-failure-analysis/#comments</comments>
		<pubDate>Sat, 09 May 2009 19:17:24 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
				<category><![CDATA[Kinetics]]></category>
		<category><![CDATA[Materials Engineer]]></category>
		<category><![CDATA[Moishe Garfinkle]]></category>
		<category><![CDATA[Thermodynamics]]></category>

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		<description><![CDATA[Fields of Expertise in Product Liability Matters Because component failure often plays a dominant role in the cause of accidents, I have been engaged by attorneys for the past 24 years for my expertise in accident investigations concerning forensic failure analysis.  My fields of knowledge include metal (ferrous &#38; non-ferrous), polymer (wood &#38; composites), and [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=38&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<h3 style="text-align:center;">Fields of Expertise in Product Liability Matters</h3>
<p>Because component failure often plays a dominant role in the cause of accidents, I have been engaged by attorneys for the past 24 years for my expertise in accident investigations concerning forensic failure analysis.  My fields of knowledge include metal (ferrous &amp; non-ferrous), polymer (wood &amp; composites), and ceramic (sanitary &amp; structural) components.  On numerous occasions I have testified in both arbitration and trial proceedings.</p>
<p style="text-align:center;"><a href="http://www.pages.drexel.edu/~garfinkm/Forensic.html" target="_blank">Go to full Article </a></p>
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		<title>Bicameral Pictographic Keyboard</title>
		<link>http://garfinkle.wordpress.com/2009/05/09/31/</link>
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		<pubDate>Sat, 09 May 2009 18:51:59 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
				<category><![CDATA[Aerodynamics]]></category>

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		<description><![CDATA[In relation to technological usefulness, pictographic character expression has generally been consigned to irrelevance. In fact, contrary to such impressions, pictographic characters have considerable technological advantages because each character represents conceptual information: a significant benefit in terms of electronic information storage capabilities and transmission speed. This benefit is not realized however because of the forlorn [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=31&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<p style="text-align:center;"><img class="alignnone size-full wp-image-60" title="F01" src="http://garfinkle.files.wordpress.com/2009/05/f01.jpg?w=604" alt="F01"   /></p>
<p><img src="///Users/Harry/Library/Caches/TemporaryItems/moz-screenshot.jpg" alt="" />In relation to technological usefulness, pictographic character expression has generally been consigned to irrelevance. In fact, contrary to such impressions, pictographic characters have considerable technological advantages because each character represents conceptual information: a significant benefit in terms of electronic information storage capabilities and transmission speed. This benefit is not realized however because of the forlorn attempts made to adapt Western orthographic keyboards to Eastern pictographic languages, completely defeating the advantages of pictographic expression. To take advantage of this benefit a purely Eastern keyboard has been developed and is disclosed herein: the proprietary Bicameral Pictographic Keyboard. This keyboard is purely pictographic without orthographic or western utility. In fact, because the Bicameral Keyboard has no key identification it would not even be recognized in the West as a legitimate data-input device. Unfortunately many Asian scholars, knowledgeable in both orthographic and pictographic languages, are so enthralled by western technology that they cannot visualize pictographic expression in technological terms nor conceptualize the efficient transmission of pictographic information electronically. This is the objective of the Bicameral Keyboard: an Eastern keyboard essentially free of Western influence.</p>
<h2 style="text-align:center;"><a href="http://www.pages.drexel.edu/~garfinkm/PictoIntro.html" target="_blank">Go to full Article</a></h2>
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		<title>Physical Chemistry Citations</title>
		<link>http://garfinkle.wordpress.com/2009/05/09/physical-chemistry-citations/</link>
		<comments>http://garfinkle.wordpress.com/2009/05/09/physical-chemistry-citations/#comments</comments>
		<pubDate>Sat, 09 May 2009 18:37:51 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
				<category><![CDATA[Chemical Reactions]]></category>
		<category><![CDATA[Kinetics]]></category>
		<category><![CDATA[Moishe Garfinkle]]></category>
		<category><![CDATA[Natural Path]]></category>
		<category><![CDATA[Thermodynamics]]></category>

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		<description><![CDATA[Irreversible Chemical Thermodynamics A Thermodynamic-Probabilistic Analysis of Diverse Homogenous Stoichiometric Chemical    Reactions M. Garfinkle; J. Physical Chemistry; 106A (2002) 490 The Thermodynamic Natural Path in Chemical Reaction Kinetics M. Garfinkle; Discrete Dynamics in Nature and Society; 4 (2000) 145   Mass Action and the Natural Path M. Garfinkle; J. Non-Equilibrium Thermodynamics; 17 (1992) 281   [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=17&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<h2 style="text-align:center;">Irreversible Chemical Thermodynamics</h2>
<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> A Thermodynamic-Probabilistic Analysis of Diverse Homogenous Stoichiometric Chemical    Reactions</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; J. Physical Chemistry; 106A (2002) 490</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> The Thermodynamic Natural Path in Chemical Reaction Kinetics</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; Discrete Dynamics in Nature and Society; 4 (2000) 145  </a></address>
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"></a></address>
<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"></a></address>
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<address><a href="http://www.pages.drexel.edu/~garfinkm/PathRef.html" target="_blank"><span style="color:#0000ff;">Mass Action and the Natural Path</span></a></address>
<address><a href="http://www.pages.drexel.edu/~garfinkm/PathRef.html" target="_blank"><span style="color:#0000ff;">M. Garfinkle; J. Non-Equilibrium Thermodynamics; 17 (1992) 281</span></a></address>
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank">Natural Path in Chemical Thermodynamics</a></address>
<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; J. Physical Chemistry; 93 (1989) 2158</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> Extraction of Standard Helmholtz Functions from Affinity Rate Data</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; Faraday Transactions I; 81 (1985) 717</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> Temperature Dependency of the Affinity Decay Rate</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; J. Chemical Physics; 79 (1984) 3640</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> Affinity Decay Rates for the Recombination of Several Monatomic Halogens</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; Material Chemistry &amp; Physics; 8 (1983) 251</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> Reaction Velocities and the Affinity Decay Rate</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; J. Chemical Physics; 79 (1983) 2779</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> Non-Equilibrium Thermodynamics of Closed-System Reaction</a><br />
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<address><a href="http://www.pages.drexel.edu/%7Egarfinkm/PathRef.html" target="_blank"> M. Garfinkle; Material Chemistry &amp; Physics, 7 (1982) 359</a><br />
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		<title>TEMPORAL CONCERNS IN THE DETERMINISTIC AND PROBABILISTIC THERMODYNAMICS OF HOMOGENEOUS CHEMICAL REACTIONS</title>
		<link>http://garfinkle.wordpress.com/2009/05/09/temporal-concerns-in-chemical-reaction-dynamics/</link>
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		<pubDate>Sat, 09 May 2009 03:41:20 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
				<category><![CDATA[Aerodynamics]]></category>
		<category><![CDATA[Chemical Reactions]]></category>
		<category><![CDATA[Kinetics]]></category>
		<category><![CDATA[Moishe Garfinkle]]></category>
		<category><![CDATA[Thermodynamics]]></category>
		<category><![CDATA[Chemical Reaction]]></category>

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		<description><![CDATA[INTRODUCTION The analytical description of the reaction path transversed by a chemical process proceeding from initiation to equilibrium should be a rather straightforward affair but this has not been the case. In fact there is a surfeit of such descriptions, often mutually exclusive. There is the mechanistic approach and the thermodynamic approach, and these can [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=6&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<h2 style="text-align:center;">INTRODUCTION</h2>
<p>The analytical description of the reaction path transversed by a chemical process proceeding from initiation to equilibrium should be a rather straightforward affair but this has not been the case. In fact there is a surfeit of such descriptions, often mutually exclusive. There is the mechanistic approach and the thermodynamic approach, and these can be either deterministic or probabilistic as shown below.</p>
<blockquote>
<blockquote>
<p style="text-align:center;">Mechanistic        Mechanistic<br />
Deterministic     Probabilistic</p></blockquote>
</blockquote>
<p style="text-align:center;">Thermodynamic      Thermodynamic<br />
Deterministic          Probabilistic</p>
<p style="text-align:left;">The mechanistic and thermodynamic approaches are easily distinguished: one investigates the interactions between reacting particles and the other the energy exchange between reaction states, respectively. Either approach can be deterministic or probabilistic.<br />
The temporal thermodynamic approach to chemical reaction kinetics described herein was developed to bridge the considerable gap between the Guldberg and Waage mass action and the De Donder force-flux approach.</p>
<p style="text-align:left;">A myriad of papers now appear in the literature involving this unique temporal thermodynamic approach. The purpose is to describe chemical reactions without reference to mechanistic considerations.</p>
<p style="text-align:center;"><a href="http://www.pages.drexel.edu/~garfinkm/Path.html" target="_blank">Go to Full Article</a></p>
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		<title>Composite Smart Architecture</title>
		<link>http://garfinkle.wordpress.com/2009/05/09/composite-smart-architecture/</link>
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		<pubDate>Sat, 09 May 2009 03:37:45 +0000</pubDate>
		<dc:creator>garfinkle</dc:creator>
				<category><![CDATA[Aerodynamics]]></category>

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		<description><![CDATA[Summary Hitherto intrinsically-smart (passive) structures, particularly box-beams, could not be continuously-wound but rather required manual-layup of fabric sections, resulting in seams, potential regions of weakness in load-bearing applications. Such discontinuities severely limits the usefulness of intrinsically-smart structures in life-critical applications, particularly when serving as wing spars. An intrinsically-smart box-beam fabricated by continuous-winding without discontinuities is [...]<img alt="" border="0" src="http://stats.wordpress.com/b.gif?host=garfinkle.wordpress.com&amp;blog=7678980&amp;post=3&amp;subd=garfinkle&amp;ref=&amp;feed=1" width="1" height="1" />]]></description>
			<content:encoded><![CDATA[<h2 style="text-align:center;">Summary</h2>
<p style="text-align:left;">Hitherto intrinsically-smart (passive) structures, particularly box-beams, could not be continuously-wound but rather required manual-layup of fabric sections, resulting in seams, potential regions of weakness in load-bearing applications. Such discontinuities severely limits the usefulness of intrinsically-smart structures in life-critical applications, particularly when serving as wing spars.<br />
An intrinsically-smart box-beam fabricated by continuous-winding without discontinuities is described and aeronautical applications relating to wing and rotor stabilization suggested. Wings with heavy tip loads such as fuel, weapons or lift engines are subject to adverse pitch-twist coupling under harsh weather conditions or during severe maneuveres, as are high aspect-ratio wings of aircraft serving HALE missions. Wing spars with intrinsic beneficial twist-bend coupling can ameliorate these adverse effects.<br />
The intrinsically-smart load-bearing box-beam architecture described herein can be fabricated by continuous-winding using conventional winding equipment and exhibits reversible twist-bend coupling. The proprietary continuous-winding architecture of the coupled beam was developed by M. Garfinkle, evaluated by C. Pastore and S. Greenhalgh, and analysed by C. Pastore, A. Bogdanovich and A. Birger.</p>
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