{ "title": "Sandstone Cliffs of Ophir Mensa", "authors": "HiRISE", "metadata": { "thumbnailURL": "https://static.uahirise.org/anews/2020-12-01/PSP_002208_1755.jpg", "excerpt": "These light-toned sedimentary deposits are of interest to scientists because they are partially composed of minerals like hematite that likely formed in the presence of liquid water." }, "version": "1.5", "identifier": "PSP_002208_1755", "language": "en", "layout": { "columns": 10, "width": 1024, "margin": 85, "gutter": 20 }, "documentStyle": { "backgroundColor": "#faf7f2" }, "components": [ { "role": "heading1", "layout": "heading1Layout", "text": "HiPOD: 1 December 2020" }, { "role": "divider", "layout": "bigDividerLayout", "stroke": { "width": 3, "color": "#8c2028" } }, { "role": "title", "layout": "halfMarginBelowLayout", "text": "Sandstone Cliffs of Ophir Mensa" }, { "role": "video", "layout": "fullBleedLayout", "URL": "https://uahirise.org/media/clips/PSP_002208_1755.mp4", "stillURL": "https://static.uahirise.org/anews/2020-12-01/PSP_002208_1755-title.jpg", "accessibilityCaption": "HiClip narration by Tre Gibbs." }, { "role": "body", "format": "html", "layout": "hipodMarginLayout", "text": "


This target was one of the first close HiRISE views of the enigmatic Valles Marineris interior layered deposits. These light-toned sedimentary deposits are of interest to scientists because they are partially composed of minerals like hematite that likely formed in the presence of liquid water.

The lighter-tone linear units to the north are called “yardangs” and formed when downslope winds carved the fragile sandstone into channels. Over time, wind and gravity conspire to erode material downslope and onto the canyon floor. The darker-toned sandy deposits at the cliff base contain high concentrations of hematite (along with basaltic or volcanic sand) known from infrared orbital measurements.

HiRISE resolution can clearly show outcrops mass wasting finer materials out, and darker layers that are likely hematite-bearing units. This is an excellent candidate for what's called a “hematite lag deposit,” where more resistant iron-rich hematite concretions have weathered out of the brittle mesa driven by gravity and wind, similar to that observed at the Mars Exploration Rover Opportunity landing site.

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ID: PSP_002208_1755
date: 15 January 2007
altitude: 266 km (165 mi)

Clip narration by Tre Gibbs

NASA/JPL/UArizona

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