Difference between revisions of "February 29, 2004"

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=Marvelous Marius Rille=
 
=Marvelous Marius Rille=
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<td><div align="center" span class="main_sm">Image Credit:  [mailto:legault@club-internet.fr Thierry Legault]</div></td>
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<td><div align="center"><p>Image Credit:  [mailto:legault@club-internet.fr Thierry Legault]</p></div></td>
 
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lack of water and life eliminate those origins. Sinuous rilles do resemble - and probably are - lava channels,  
 
lack of water and life eliminate those origins. Sinuous rilles do resemble - and probably are - lava channels,  
 
made by lava flowing downhill from a source vent. The Apollo 15 visit to the  
 
made by lava flowing downhill from a source vent. The Apollo 15 visit to the  
[LPOD-2004-02-26.htm Hadley Rille] supported that interpretation. So it is not surprising to find  
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[[February_26,_2004|Hadley Rille]] supported that interpretation. So it is not surprising to find  
 
the wonderful Marius Rille at the north end of the volcanic Marius Hills complex. What is surprising is that such  
 
the wonderful Marius Rille at the north end of the volcanic Marius Hills complex. What is surprising is that such  
 
an excellent image of the rille was taken with a 12" telescope! Legault's image shows the 2 km wide rille starting
 
an excellent image of the rille was taken with a 12" telescope! Legault's image shows the 2 km wide rille starting
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[http://www.lpi.usra.edu/research/lunar_orbiter/images/img/iv_150_h2.jpg Lunar Orbiter IV view]<br>
 
[http://www.lpi.usra.edu/research/lunar_orbiter/images/img/iv_150_h2.jpg Lunar Orbiter IV view]<br>
 
[http://www.marsinstitute.info/rd/faculty/dportree/rtr/ap33.html Water Exploration in the Marius Hills]</p>
 
[http://www.marsinstitute.info/rd/faculty/dportree/rtr/ap33.html Water Exploration in the Marius Hills]</p>
<p class="story"> <b>Tomorrow's LPOD:</b> Old Moon's Arms</p>
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<p><b>Yesterday's LPOD:</b> [[February 28, 2004|Angular Basin]] </p>
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<p><b>Tomorrow's LPOD:</b> [[March 1, 2004|New Moon's Arms]] </p>
 
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<p align="center" class="main_titles"><b>Author & Editor:</b><br>
 
<p align="center" class="main_titles"><b>Author & Editor:</b><br>
 
[mailto:tychocrater@yahoo.com Charles A. Wood]</p>
 
[mailto:tychocrater@yahoo.com Charles A. Wood]</p>
<p align="center" class="main_titles"><b>Technical Consultant:</b><br>
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[mailto:anthony@perseus.gr Anthony Ayiomamitis]</p>
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<p align="center" class="main_titles"><b>A service of:</b><br>
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[http://www.observingthesky.org/ ObservingTheSky.Org]</p>
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<p align="center" class="main_titles"><b>Visit these other PODs:</b> <br>
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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>
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<p>&nbsp;</p>
 
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===COMMENTS?===
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Latest revision as of 19:12, 7 February 2015

Marvelous Marius Rille


LPOD-2004-02-29.jpeg

LPOD-2004-02-29b.jpeg

Image Credit: Thierry Legault

Marvelous Marius Rille

Sinuous rilles have led some lunar scientists astray. The curving outlines led to proposals that such rilles were meandering water streams, although by shape alone a giant worm might have been equally defensible! But the Moon's lack of water and life eliminate those origins. Sinuous rilles do resemble - and probably are - lava channels, made by lava flowing downhill from a source vent. The Apollo 15 visit to the Hadley Rille supported that interpretation. So it is not surprising to find the wonderful Marius Rille at the north end of the volcanic Marius Hills complex. What is surprising is that such an excellent image of the rille was taken with a 12" telescope! Legault's image shows the 2 km wide rille starting northwest of the crater Marius C without any obvious vent and running about 250 km (according to Rukl's Atlas of the Moon). It takes a turn to the left near Marius B, and at Marius P narrows to about 1 km width. Look northeast of Marius P to see a much thinner rille that is barely visible on Lunar Orbiter IV images. This image also reveals a central peak in the 11.4 km wide Marius C and some sort of off-center hill in Marius B (11.6 km). Only a few impact craters this size have central peaks - the transition to complex craters begins in craters with diameters of about 15 km. Move the mouse over the image to see crater designations.

Technical Details:
305 mm Meade Schmidt-Cassegrain and Philips Vesta Pro webcam

Related Links:
High resolution CCD imaging
Lunar Orbiter IV view
Water Exploration in the Marius Hills

Yesterday's LPOD: Angular Basin

Tomorrow's LPOD: New Moon's Arms


Author & Editor:
Charles A. Wood

 


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