Difference between revisions of "July 22, 2004"

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=Huge Fractures=
 
=Huge Fractures=
 
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      <td><h2 align="left">Huge Fractures</h2></td>
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      <td><h2 align="right">July 22, 2004</h2></td>
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[javascript:;" onMouseOver="MM_swapImage('Image1','','images/LPOD-2004-07-22b.jpeg',1)" onMouseOut="MM_swapImgRestore() [[File:LPOD-2004-07-22.jpeg|LPOD-2004-07-22.jpeg]]]</a>
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      <td><div align="center" span class="main_sm">Image Credit: [mailto:bobbotts@cogeco.ca Bob Botts] </div></td>
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<td><div align="center" span class="main_sm">Image Credit: [mailto:bobbotts@cogeco.ca Bob Botts] </div></td>
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<p class="story" align="center"><b>Huge Fractures</b></p>
  <p class="story" align="center"><b>Huge Fractures</b></p>
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<p class="story" align="left">
  <p class="story" align="left">
 
 
These images are remarkable in showing the tectonic structure southeast of Mare Nectaris. And because Bob Botts took images on successive nights of the waning Moon we can see the same area illuminated and then deeply shadowed. The area SE of Nectaris is well known for its strong and conspicuous radial basin structures. Both the Snellius and Rheita Valleys (black lines on mouseover) are large secondary crater chains caused by mountainous blocks ejected during the formation of the Nectaris impact basin. But Bott's image shows other larger dislocations of the crust also radial to Nectaris. The Oct. 13 view shows a big slab of ground (labeled B for block) that casts a shadow to the north and is bounded on the south by a long, bright line that passes through Brenner. Block B appears to be fault-bounded and higher than the surfaces to its north and south. The previous night's view (remember these are sunset images so the terminator hides land to the east every night) reveals that the low land to the north of block B is partially flat and covered with smooth material. This makes sense, for mare lavas - or other flows - would be expected in lowlands. If block B did move differentially compared to its surroundings then it is one of the largest such blocks on the Moon - except for the truly gigantic circular faults like the Apennines and Altai that define impact basins.
 
These images are remarkable in showing the tectonic structure southeast of Mare Nectaris. And because Bob Botts took images on successive nights of the waning Moon we can see the same area illuminated and then deeply shadowed. The area SE of Nectaris is well known for its strong and conspicuous radial basin structures. Both the Snellius and Rheita Valleys (black lines on mouseover) are large secondary crater chains caused by mountainous blocks ejected during the formation of the Nectaris impact basin. But Bott's image shows other larger dislocations of the crust also radial to Nectaris. The Oct. 13 view shows a big slab of ground (labeled B for block) that casts a shadow to the north and is bounded on the south by a long, bright line that passes through Brenner. Block B appears to be fault-bounded and higher than the surfaces to its north and south. The previous night's view (remember these are sunset images so the terminator hides land to the east every night) reveals that the low land to the north of block B is partially flat and covered with smooth material. This makes sense, for mare lavas - or other flows - would be expected in lowlands. If block B did move differentially compared to its surroundings then it is one of the largest such blocks on the Moon - except for the truly gigantic circular faults like the Apennines and Altai that define impact basins.
  <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"><b>Technical Details:</b><br>
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<p class="story"><b>Technical Details:</b><br>
    October 12 and 13, 2003. 12&quot; SCT f10 with Toucam webcam, processed&nbsp;using Registax</p>
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October 12 and 13, 2003. 12&quot; SCT f10 with Toucam webcam, processed&nbsp;using Registax</p>
  <p class"story"><b>Related Links:</b> <br>
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<p class="story"><b>Related Links:</b> <br>
    [http://www.lpi.usra.edu/research/lunar_orbiter/images/aimg/iv_064_h3.jpg Lunar Orbiter IV View] (notice fault)</p>
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[http://www.lpi.usra.edu/research/lunar_orbiter/images/aimg/iv_064_h3.jpg Lunar Orbiter IV View] (notice fault)</p>
  <p class"story"><b>Tomorrow's LPOD:</b> Sun, Moon and Stars </p>
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<p class="story"><b>Tomorrow's LPOD:</b> Sun, Moon and Stars </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>
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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>
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<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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</table>
            <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>
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<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

Huge Fractures

[javascript:;" onMouseOver="MM_swapImage('Image1',,'images/LPOD-2004-07-22b.jpeg',1)" onMouseOut="MM_swapImgRestore() LPOD-2004-07-22.jpeg]</a>

Image Credit: Bob Botts

Huge Fractures

These images are remarkable in showing the tectonic structure southeast of Mare Nectaris. And because Bob Botts took images on successive nights of the waning Moon we can see the same area illuminated and then deeply shadowed. The area SE of Nectaris is well known for its strong and conspicuous radial basin structures. Both the Snellius and Rheita Valleys (black lines on mouseover) are large secondary crater chains caused by mountainous blocks ejected during the formation of the Nectaris impact basin. But Bott's image shows other larger dislocations of the crust also radial to Nectaris. The Oct. 13 view shows a big slab of ground (labeled B for block) that casts a shadow to the north and is bounded on the south by a long, bright line that passes through Brenner. Block B appears to be fault-bounded and higher than the surfaces to its north and south. The previous night's view (remember these are sunset images so the terminator hides land to the east every night) reveals that the low land to the north of block B is partially flat and covered with smooth material. This makes sense, for mare lavas - or other flows - would be expected in lowlands. If block B did move differentially compared to its surroundings then it is one of the largest such blocks on the Moon - except for the truly gigantic circular faults like the Apennines and Altai that define impact basins.

Chuck Wood

Technical Details:
October 12 and 13, 2003. 12" SCT f10 with Toucam webcam, processed using Registax

Related Links:
Lunar Orbiter IV View (notice fault)

Tomorrow's LPOD: Sun, Moon and Stars


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.