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    <title>Musical scores from the World of ANATHEM</title>
    <link>http://www.synthesist.net/music/anathem</link>
    <description>A collection of some of the scores created for the Anathem music project.</description>
    <language>en-US</language>

    <pubDate>Sun, 3 Aug 2008 12:22:00 PDT</pubDate>
    <lastBuildDate>Sun, 3 Aug 2008 12:22:00 PDT</lastBuildDate>

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      <title>Mascheroni Construction of the Unit Square</title>
      <link>http://www.synthesist.net/tunes/scores/MascheroniConstructionOfTheUnitSquare-DavidStutz.pdf</link>
      <pubDate>Wed, 27 Aug 2008 16:05:00 PDT</pubDate>
      <dc:creator>David Stutz</dc:creator>
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      <description>A duet written for the 9 September introduction of Anathem in San Francisco, which demonstrates
		  the compositional techniques that I have used to convert Mascheroni constructions into music. The construction
		  itself is quite simple - the unit square.</description>
      <content:encoded><![CDATA[A duet written for the 9 September introduction of Anathem in San Francisco, which demonstrates the compositional techniques that I have used to convert Mascheroni constructions into music. The construction itself is quite simple - the unit square.]]></content:encoded>
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      <title>Mascheroni Circles</title>
      <link>http://www.synthesist.net/tunes/scores/MascheroniCircles-DavidStutz.pdf</link>
      <pubDate>Sun, 3 Aug 2008 12:22:00 PDT</pubDate>
      <dc:creator>David Stutz</dc:creator>
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      <description>A piece for any number of players or singers, which constructs Euclid&apos;s Brides&apos;s Chair Proof using compass alone. </description>
      <content:encoded><![CDATA[A piece for any number of players or singers, which constructs Euclid&apos;s Brides&apos;s Chair Proof using compass alone.]]></content:encoded>
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      <title>Proof Using Finite Projective Geometry</title>
      <link>http://www.synthesist.net/tunes/scores/FiniteProjectiveGeometry-DavidStutz.pdf</link>
      <pubDate>Sun, 3 Aug 2008 12:22:00 PDT</pubDate>
      <dc:creator>David Stutz</dc:creator>
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      <description>A simple proof in finite projective geometry for four singers. The proof is modeled after one found in Lovasz, Pelikan, and Vesztergombi. Each voice represent a line, and points are encoded melodically. The structure of the Fano plane is sung after the proof is concluded. </description>
      <content:encoded><![CDATA[A simple proof in finite projective geometry for four singers. The proof is modeled after one found in Lovasz, Pelikan, and Vesztergombi. Each voice represent a line, and points are encoded melodically. The structure of the Fano plane is sung after the proof is concluded.]]></content:encoded>
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      <title>Cellular Automata</title>
      <link>http://www.synthesist.net/tunes/scores/SimpleAutomata-DavidStutz.pdf</link>
      <pubDate>Sun, 3 Aug 2008 12:22:00 PDT</pubDate>
      <dc:creator>David Stutz</dc:creator>
      <media:thumbnail url="http://www.synthesist.net/images/dstutz_th.gif"></media:thumbnail>
      
      <description>A collection of several one-dimensional cellular automata for 11 singers and one Automata Master, who introduces each by its canonical number. Binary cells are mapped onto voice part. </description>
      <content:encoded><![CDATA[A collection of several one-dimensional cellular automata for 11 singers and one Automata Master, who introduces each by its canonical number. Binary cells are mapped onto voice part.]]></content:encoded>
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      <title>Asynchronous Automaton</title>
      <link>http://www.synthesist.net/tunes/scores/AsynchronousAutomaton_Rule245-DavidStutz.pdf</link>
      <pubDate>Sun, 3 Aug 2008 12:22:00 PDT</pubDate>
      <dc:creator>David Stutz</dc:creator>
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      <description>A simple asynchronous automaton. </description>
      <content:encoded><![CDATA[A simple asynchronous automaton.]]></content:encoded>
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    </item><item>
      <title>16 Color Prime Generating Automaton</title>
      <link>http://www.synthesist.net/tunes/scores/PrimeGeneratingAutomaton-DavidStutz.pdf</link>
      <pubDate>Sun, 3 Aug 2008 12:22:00 PDT</pubDate>
      <dc:creator>David Stutz</dc:creator>
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      <description>Solo vocal version of a chant encoding a sixteen color cellular automaton that calculates prime numbers. The encoding uses melodic fragments to iteratively represent the colors of the automaton. This algorithmic piece was typeset using Lilypond.</description>
      <content:encoded><![CDATA[Solo vocal version of a chant encoding a sixteen color cellular automaton that calculates prime numbers. The encoding uses melodic fragments to iteratively represent the colors of the automaton. This algorithmic piece was typeset using Lilypond.]]></content:encoded>
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    </item><item>
      <title>Quadratic</title>
      <link>http://www.synthesist.net/tunes/scores/Quadratic-DavidStutz.pdf</link>
      <pubDate>Sun, 3 Aug 2008 12:22:00 PDT</pubDate>
      <dc:creator>David Stutz</dc:creator>
      <media:thumbnail url="http://www.synthesist.net/images/dstutz_th.gif"></media:thumbnail>
      
      <description>An straightforward encoding into chant and drone of completing the square to derive the quadratic equation. </description>
      <content:encoded><![CDATA[An straightforward encoding into chant and drone of completing the square to derive the quadratic equation.]]></content:encoded>
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