Regulatory Mechanisms in Biosystems (E-Journal - Dnipro National University)
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    Dr. Hector P. Garcia standing before a low wooden wall.

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    Dr. Hector P. Garcia standing before a low wooden wall

    A child, sitting next to a cake and looking at the camera

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    A child, sitting next to a cake and looking at the camer

    A flowering white tree with shrubs in front of the Garcia residence

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    A flowering white tree with shrubs in front of the Garcia residenc

    COVID-19 Predictive Modeling Joint Task Force presentation. April 10, 2020.

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    Presentation of the COVID-19 Predictive Modeling Corpus Christi -TAMU-CC Joint Task Force at the Corpus Christi press conference on April 10, 2020

    A photo of a man and a woman

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    A photo of a man and a woma

    Daisy Wanda Garcia sits on a sidewalk holding a stuffed animal.

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    Daisy Wanda Garcia sits on a sidewalk holding a stuffed animal

    Bacteria forming drag-increasing streamers on a drop implicates complementary fates of rising deep-sea oil droplets

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    Competing time scales involved in rapid rising micro-droplets in comparison to substantially slower biodegradation processes at oil-water interfaces highlights a perplexing question: how do biotic processes occur and alter the fates of oil micro-droplets (<500 μm) in the 400 m thick Deepwater Horizon deep-sea plume? For instance, a 200 μm droplet traverses the plume in ~48 h, while known biodegradation processes require weeks to complete. Using a microfluidic platform allowing microcosm observations of a droplet passing through a bacterial suspension at ecologically relevant length and time scales, we discover that within minutes bacteria attach onto an oil droplet and extrude polymeric streamers that rapidly bundle into an elongated aggregate, drastically increasing drag that consequently slows droplet rising velocity. Results provide a key mechanism bridging competing scales and establish a potential pathway to biodegradation and sedimentations as well as substantially alter physical transport of droplets during a deep-sea oil spill with dispersant.Competing time scales involved in rapid rising micro-droplets in comparison to substantially slower biodegradation processes at oil-water interfaces highlights a perplexing question: how do biotic processes occur and alter the fates of oil micro-droplets (<500 μm) in the 400 m thick Deepwater Horizon deep-sea plume? For instance, a 200 μm droplet traverses the plume in ~48 h, while known biodegradation processes require weeks to complete. Using a microfluidic platform allowing microcosm observations of a droplet passing through a bacterial suspension at ecologically relevant length and time scales, we discover that within minutes bacteria attach onto an oil droplet and extrude polymeric streamers that rapidly bundle into an elongated aggregate, drastically increasing drag that consequently slows droplet rising velocity. Results provide a key mechanism bridging competing scales and establish a potential pathway to biodegradation and sedimentations as well as substantially alter physical transport of droplets during a deep-sea oil spill with dispersant

    Primary Water Level Time Series - Port O'Connor

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    Port O'Connor primary water level measurements (PWL). Raw data as received at CBI in CSV format. Time stamp following ISO 8601. PWL in meters referenced to station datum. Time series span: 1995-05-24 00:00 GMT through 2019-12-31 23:54 GMT.US Army Corps of Engineers (USACE), Texas General Land Office (GLO), Texas Water Development Board (TWDB) and in collaboration and following the standards of the National Oceanic and Atmospheric Administration (NOAA)

    Photograph taken of Starr Street during the COVID-19 crisis on April 17, 2020

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    Photograph taken of Starr Street in downtown Corpus Christi during the COVID-19 crisis on April 17, 2020Photograph taken of Starr Street in downtown Corpus Christi during the COVID-19 crisis on April 17, 202

    Wanda Fusillo Garcia, Dr. Hector P. Garcia, Daisy Wanda Garcia, and a boy stand in front of a Christmas Tree

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    Wanda Fusillo Garcia, Dr. Hector P. Garcia, Daisy Wanda Garcia, and a boy stand in front of a Christmas Tre

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    Regulatory Mechanisms in Biosystems (E-Journal - Dnipro National University)
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