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      <image:title>Home</image:title>
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      <image:title>Home</image:title>
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      <image:title>Home</image:title>
      <image:caption>Hosting weekly review lectures for my sedimentary geology course. (2016)</image:caption>
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  <url>
    <loc>https://www.ryanherring.org/contact</loc>
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    <lastmod>2025-11-25</lastmod>
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      <image:title>Contact</image:title>
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      <image:title>Contact</image:title>
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  <url>
    <loc>https://www.ryanherring.org/academics</loc>
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    <lastmod>2026-02-26</lastmod>
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      <image:title>Academics</image:title>
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      <image:title>Academics</image:title>
      <image:caption>Fig. 1. Hosting weekly review lectures for my sedimentary geology course. (2016)</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1583996884441-5V7WZ8CWDBTDPCFUA2MN/IMG_0268.JPG</image:loc>
      <image:title>Academics</image:title>
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      <image:title>Academics</image:title>
      <image:caption>Fig. 2. Receiving an award for Outstanding Undergraduate Poster at the 9th Annual University of Texas Jackson School of Geosciences Research Symposium. (15 Feb. 2020)</image:caption>
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  <url>
    <loc>https://www.ryanherring.org/public-data</loc>
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    <lastmod>2022-10-10</lastmod>
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      <image:title>Public Data</image:title>
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      <image:title>Public Data</image:title>
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  <url>
    <loc>https://www.ryanherring.org/outreach</loc>
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    <lastmod>2026-02-26</lastmod>
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      <image:title>Outreach</image:title>
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      <image:title>Outreach</image:title>
      <image:caption>Fig. 1. Giving a talk on our research on “Stratigraphic Interpretation of Corpus Christi Bay Area via MCS Seismic/CHIRP Data and Divulging the Geomorphological Impacts of Hurricane Harvey to the Coastal Environment” at the University of Texas Institute for Geophysics.</image:caption>
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  </url>
  <url>
    <loc>https://www.ryanherring.org/experience</loc>
    <changefreq>daily</changefreq>
    <priority>0.75</priority>
    <lastmod>2025-11-25</lastmod>
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      <image:title>Experience</image:title>
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      <image:title>Experience</image:title>
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  <url>
    <loc>https://www.ryanherring.org/field</loc>
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    <priority>0.75</priority>
    <lastmod>2025-01-17</lastmod>
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      <image:title>Field</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1567209988476-X1HHFSOT3D0L5QCEG8ST/IMG_5130.JPG</image:loc>
      <image:title>Field</image:title>
      <image:caption>Fig. 1. Paying out the hydrophone streamer aboard the R/V Brooks McCall on Day 6 of the UTIG expedition to the Gulf of Mexico (I’m the one wearing the orange shirt and white hard hat). The streamer is a buoyant assemblage of hydrophones towed behind the vessel which record pressure changes in the water by generating an electrical potential when subjected to a pressure change. These receivers record how long it takes for the sound waves generated by an airgun to reflect off of interfaces of acoustic impedance and return to the surface. Sound waves reflected off of different interfaces arrive at the hydrophones at different times, thereby allowing us to view the subsurface. (27 May 2019)</image:caption>
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      <image:title>Field</image:title>
      <image:caption>Fig. 2. Part of my analysis of the evolution of scours seen within the Corpus Christi Bay, as a result of Hurricane Harvey, which I utilised to deduce the path and flow velocity of the hurricane’s return flow. (Presented on 10 Jun. 2019)</image:caption>
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  </url>
  <url>
    <loc>https://www.ryanherring.org/media</loc>
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    <priority>0.75</priority>
    <lastmod>2023-04-18</lastmod>
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      <image:title>Media</image:title>
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    <image:image>
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      <image:title>Media</image:title>
      <image:caption>Fig. 1. Preparing to give an interview for the University of Texas Institute for Geophysics.</image:caption>
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  </url>
  <url>
    <loc>https://www.ryanherring.org/team</loc>
    <changefreq>daily</changefreq>
    <priority>0.75</priority>
    <lastmod>2025-01-17</lastmod>
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      <image:title>Team</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1614268470177-1XBT79TPLRVQNMYKDS3Z/DSCN1796-3.jpg</image:loc>
      <image:title>Team</image:title>
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      <image:title>Team</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1614343997618-9YY0E6PX6VBDCFKPFWCL/IMG_4896.jpeg</image:loc>
      <image:title>Team</image:title>
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  </url>
  <url>
    <loc>https://www.ryanherring.org/publications</loc>
    <changefreq>daily</changefreq>
    <priority>0.75</priority>
    <lastmod>2026-02-26</lastmod>
    <image:image>
      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1628072685130-P55NTI5EXXXGIKAEY1Z1/4+%281%29.JPG</image:loc>
      <image:title>Publications</image:title>
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      <image:title>Publications</image:title>
      <image:caption>Fig. 1. Presenting my research on modelling the Mississippi River delta at the 9th Annual JSG Student Research Symposium, which earned an award for Outstanding Undergraduate Poster. (2020)</image:caption>
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  </url>
  <url>
    <loc>https://www.ryanherring.org/titan</loc>
    <changefreq>daily</changefreq>
    <priority>0.75</priority>
    <lastmod>2025-01-19</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1681852612802-8NLG0FSKJLD0WBT4B485/Kraken_mare.png</image:loc>
      <image:title>Titan</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/e374e198-2949-491b-af42-757f758e14b5/5-Figure4-1.png</image:loc>
      <image:title>Titan - Make it stand out</image:title>
      <image:caption>Fig 1. Selk Crater, the destination for the upcoming Dragonfly mission, as seen in Cassini VIMS (from Soderblom et al., 2010.)</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/fffbfdc9-4615-4b37-a369-269362e9a666/ontario_lacus_delta.png</image:loc>
      <image:title>Titan</image:title>
      <image:caption>Fig. 2. Titan’s only two confirmed delta lobes, formed where Saraswati Flumen terminates into Ontario Lacus’ shoreline, as seen in Cassini SAR.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/ffecfc2f-d87c-4806-9721-6a237f576112/north_polar_project_oldArcGIS.png</image:loc>
      <image:title>Titan - Make it stand out</image:title>
      <image:caption>Fig. 3. Small filled lakes in Titan’s northern polar lake district.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/bae232c1-68b3-4f12-a456-68cd450d9d77/Kraken_mare.png</image:loc>
      <image:title>Titan - Make it stand out</image:title>
      <image:caption>Fig. 4. Kraken Mare, the largest of Titan’s seas, and the largest lake in the solar system.</image:caption>
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  </url>
  <url>
    <loc>https://www.ryanherring.org/earth</loc>
    <changefreq>daily</changefreq>
    <priority>0.75</priority>
    <lastmod>2025-06-26</lastmod>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1590727570491-6JSDGQ4UZG91PQHC85KM/Beaumont_Basin.PNG</image:loc>
      <image:title>Earth</image:title>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1590727570491-6JSDGQ4UZG91PQHC85KM/Beaumont_Basin.PNG</image:loc>
      <image:title>Earth</image:title>
      <image:caption>Fig. 1. Slope map derived from 12 m BOEM bathymetry of the Beaumont minibasin bisected by the Bryant Canyon turbidity channel complex.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1567196688622-62533K2596XRWAITTJL0/IMG_5210.JPG</image:loc>
      <image:title>Earth</image:title>
      <image:caption>Fig. 2. Processing recently acquired multibeam echosounder (MBES) data on CARIS from our forward operating base. (2019)</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1567205185184-8A70MIQE6DI1HOCYXQFB/Late+Wisconsin+Unconformity+22x16+narrow+margin+high+res.jpg</image:loc>
      <image:title>Earth</image:title>
      <image:caption>Fig. 3. Elevation map of the base of the substratum within and offshore of the Lower Mississippi Valley deposited during the rapid base level rise subsequent of the LGM.</image:caption>
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      <image:loc>https://images.squarespace-cdn.com/content/v1/5d646085f6ac7700011a0ec9/1603106422361-4WE7WN3V46P6YWH8UUJ3/Kolyma_sentinel-1.JPG</image:loc>
      <image:title>Earth - Make it stand out</image:title>
      <image:caption>Fig. 4. The Kolyma Delta, as seen in a false colour RGB timeseries from GRD processed VV polarised Sentinel-1 C-SAR.</image:caption>
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  </url>
  <url>
    <loc>https://www.ryanherring.org/comets</loc>
    <changefreq>daily</changefreq>
    <priority>0.75</priority>
    <lastmod>2025-01-19</lastmod>
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      <image:title>Comets</image:title>
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    <image:image>
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      <image:title>Comets - Make it stand out</image:title>
      <image:caption>Fig. 1. Dust airfalling back onto 67P’s surface, as captured by Rosetta’s OSIRIS instrument (ESA).</image:caption>
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      <image:title>Comets</image:title>
      <image:caption>Fig. 2. Modelled trajectory of sediment ejected from an outburst at Aswan cliff at 0.6 m/s via a modified form of DRAG3D, used as the dust-transport model in this investigation.</image:caption>
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  </url>
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