Difference between revisions of "July 17, 2004"

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=Our Moon=
 
=Our Moon=
 
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      <td><h2 align="left">Our Moon</h2></td>
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      <td><h2 align="right">July 17, 2004</h2></td>
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[[File:LPOD-2004-07-17.jpeg|LPOD-2004-07-17.jpeg]]
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      <td><div align="center" span class="main_sm">Image Credit: [mailto:chuck@observingthesky.org" class="one Chuck Wood]</div></td>
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<td><div align="center" span class="main_sm">Image Credit: [mailto:tychocrater@yahoo.com" class="one Chuck Wood]</div></td>
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<p class="story" align="center"><b>Our Moon</b></p>
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During the 1800s lunar studies were dominated by the great German selenographers: Schroeter, Lohrmann, [http://www.lpod.org/LPOD-2004-01-16.htm Madler]  and [http://www.lpod.org/LPOD-2004-03-08.htm Schmidt].  In the late 1800s and the 1900s the Moon mapping mantle passed to the British: Nasmyth and Carpenter, Neison, [http://www.lpod.org/LPOD-2004-03-28.htm Elger],  [http://www.lpod.org/LPOD-2004-03-06.htm Goodacre],  and Wilkins and Moore. But one idiosyncratic German observer of remarkable determination and drafting skill continued the German style of careful drafting and analytical thinking about the Moon. Phillip Fauth was a school teacher, but he was obsessed with the Moon and observed it avidly for 50 years. Fauth's <i>magnum opus</i> was <i>Unser Mond</i> (Our Moon), published in 1936. This relatively rare book is essentially the description of craters shown on his large map, which unfortunately wasn't published until 1964. Each crater has a description ranging in length from one paragraph (Kant) to 3.5 pages (Alphonsus). As far as my broken German informs me, for each crater Fauth included morphologic details and peak heights and crater depths from many previous observers. In design and content, Fauth's book is similar to the 1955 <i>The Moon</i> of Wilkins and Moore, but the descriptions in <i>Unser Mond</i> seem more detailed. The right side of the image above demonstrates that unlike virtually all previous observers, Fauth noticed large-scale features. His diagram, which is centered on Mare Nectaris, shows that he recognized the multi-ring structure of the Nectaris basin, but he extended his rings far beyond those defined by scarps to include arcuate alignments of craters. His inner rings for Nectaris represent perhaps their first discovery, but his outer crater circles are simply chance alignments of craters having nothing to do with Nectaris.
 
During the 1800s lunar studies were dominated by the great German selenographers: Schroeter, Lohrmann, [http://www.lpod.org/LPOD-2004-01-16.htm Madler]  and [http://www.lpod.org/LPOD-2004-03-08.htm Schmidt].  In the late 1800s and the 1900s the Moon mapping mantle passed to the British: Nasmyth and Carpenter, Neison, [http://www.lpod.org/LPOD-2004-03-28.htm Elger],  [http://www.lpod.org/LPOD-2004-03-06.htm Goodacre],  and Wilkins and Moore. But one idiosyncratic German observer of remarkable determination and drafting skill continued the German style of careful drafting and analytical thinking about the Moon. Phillip Fauth was a school teacher, but he was obsessed with the Moon and observed it avidly for 50 years. Fauth's <i>magnum opus</i> was <i>Unser Mond</i> (Our Moon), published in 1936. This relatively rare book is essentially the description of craters shown on his large map, which unfortunately wasn't published until 1964. Each crater has a description ranging in length from one paragraph (Kant) to 3.5 pages (Alphonsus). As far as my broken German informs me, for each crater Fauth included morphologic details and peak heights and crater depths from many previous observers. In design and content, Fauth's book is similar to the 1955 <i>The Moon</i> of Wilkins and Moore, but the descriptions in <i>Unser Mond</i> seem more detailed. The right side of the image above demonstrates that unlike virtually all previous observers, Fauth noticed large-scale features. His diagram, which is centered on Mare Nectaris, shows that he recognized the multi-ring structure of the Nectaris basin, but he extended his rings far beyond those defined by scarps to include arcuate alignments of craters. His inner rings for Nectaris represent perhaps their first discovery, but his outer crater circles are simply chance alignments of craters having nothing to do with Nectaris.
  <blockquote>
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<blockquote>
    <p align="right" class="story">&#8212; [mailto:chuck@observingthesky.org Chuck Wood]</blockquote>
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<p align="right" class="story">&#8212; [mailto:tychocrater@yahoo.com Chuck Wood]</blockquote>
  <p class="story" align="left"><b>Related Links: </b><br>
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<p class="story" align="left"><b>Related Links: </b><br>
      [http://www.space.edu/moon/timeline/1900-60/1909-Fauth.html Phillip Fauth]  <p class"story"><b>Tomorrow's LPOD:</b> A New Hit CD </p>
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[http://www.space.edu/moon/timeline/1900-60/1909-Fauth.html Phillip Fauth]  <p class="story"><b>Tomorrow's LPOD:</b> A New Hit CD </p>
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<td><p align="center" class="main_titles"><b>Author & Editor:</b><br>
      <td><hr width="640"></td>
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[mailto:tychocrater@yahoo.com Charles A. Wood]</p>
      </tr>
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<p align="center" class="main_titles"><b>Technical Consultant:</b><br>
    <tr>
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[mailto:anthony@perseus.gr Anthony Ayiomamitis]</p>
      <td><p align="center" class="main_titles"><b>Author & Editor:</b><br>
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<p align="center" class="main_titles"><b>A service of:</b><br>
          [mailto:chuck@observingthesky.org Charles A. Wood]</p>
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[http://www.observingthesky.org/ ObservingTheSky.Org]</p>
        <p align="center" class="main_titles"><b>Technical Consultant:</b><br>
+
<p align="center" class="main_titles"><b>Visit these other PODs:</b> <br>
            [mailto:anthony@perseus.gr Anthony Ayiomamitis]</p>
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[http://antwrp.gsfc.nasa.gov/apod/astropix.html Astronomy] | [http://www.msss.com/ Mars] | [http://epod.usra.edu/ Earth]</p></td>
        <p align="center" class="main_titles"><b>[mailto:webmaster@entropysponge.com Contact Webmaster]</b></p>
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        <p align="center" class="main_titles"><b>A service of:</b><br>
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            <a class="one" href="http://www.observingthesky.org/">ObservingTheSky.Org</a></p>
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<!-- end cal -->
        <p align="center" class="main_titles"><b>Visit these other PODs:</b> <br>
+
<div align="center"></div>
          <a class="one" href="http://antwrp.gsfc.nasa.gov/apod/astropix.html">Astronomy</a> | <a class="one" href="http://www.msss.com/">Mars</a> | <a class="one" href="http://epod.usra.edu/">Earth</a></p></td>
 
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===COMMENTS?===  
 
===COMMENTS?===  
 
Click on this icon [[image:PostIcon.jpg]] at the upper right to post a comment.
 
Click on this icon [[image:PostIcon.jpg]] at the upper right to post a comment.

Revision as of 18:22, 4 January 2015

Our Moon

LPOD-2004-07-17.jpeg

Our Moon

During the 1800s lunar studies were dominated by the great German selenographers: Schroeter, Lohrmann, Madler and Schmidt. In the late 1800s and the 1900s the Moon mapping mantle passed to the British: Nasmyth and Carpenter, Neison, Elger, Goodacre, and Wilkins and Moore. But one idiosyncratic German observer of remarkable determination and drafting skill continued the German style of careful drafting and analytical thinking about the Moon. Phillip Fauth was a school teacher, but he was obsessed with the Moon and observed it avidly for 50 years. Fauth's magnum opus was Unser Mond (Our Moon), published in 1936. This relatively rare book is essentially the description of craters shown on his large map, which unfortunately wasn't published until 1964. Each crater has a description ranging in length from one paragraph (Kant) to 3.5 pages (Alphonsus). As far as my broken German informs me, for each crater Fauth included morphologic details and peak heights and crater depths from many previous observers. In design and content, Fauth's book is similar to the 1955 The Moon of Wilkins and Moore, but the descriptions in Unser Mond seem more detailed. The right side of the image above demonstrates that unlike virtually all previous observers, Fauth noticed large-scale features. His diagram, which is centered on Mare Nectaris, shows that he recognized the multi-ring structure of the Nectaris basin, but he extended his rings far beyond those defined by scarps to include arcuate alignments of craters. His inner rings for Nectaris represent perhaps their first discovery, but his outer crater circles are simply chance alignments of craters having nothing to do with Nectaris.

Chuck Wood

Related Links:
Phillip Fauth

Tomorrow's LPOD: A New Hit CD


Author & Editor:
Charles A. Wood

Technical Consultant:
Anthony Ayiomamitis

A service of:
ObservingTheSky.Org

Visit these other PODs:
Astronomy | Mars | Earth

 


COMMENTS?

Click on this icon File:PostIcon.jpg at the upper right to post a comment.