Oh Chute!: Examining the Relationship Between Migration Rate and Cutoff Type in Meandering Rivers Using Remote Sensing
This poster explores the processes that control meandering rivers, with a focus on chute and neck cutoffs. Using remote sensing, the study examines how cutoff type and frequency relate to river migration, sinuosity, and vegetation density. These insights contribute to a better understanding of river dynamics and have important implications for flood mitigation and water resource management.
Josephine Anderson 2025 REU Poster
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Work Title Oh Chute!: Examining the Relationship Between Migration Rate and Cutoff Type in Meandering Rivers Using Remote Sensing Access Creators - Josephine Anderson
- Noshin Sharmili
- Elizabeth Hajek
Keyword - 2025 REU
License CC BY 4.0 (Attribution) Work Type Poster Acknowledgments - Thank you to Dr. Anastasia Piliouras, Liz Tofte, Dr. Maureen Feineman, and the 2025 Penn State GeoPEERS REU program participants for their support and mentorship. This material is based upon work supported by the National Science Foundation under Grant No. EAR-2050463.
Publication Date August 1, 2025 Deposited August 31, 2025 Versions
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Version 1
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Updated Description, Publication Date Show ChangesDescriptionPublication Date
- Final project poster presentation
- 2025-08-01
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Added Creator ELIZABETH HAJEK
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Added Creator Noshin Sharmili
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Final.pdf -
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Renamed Creator Elizabeth Hajek Show Changes
ELIZABETH HAJEK- Elizabeth Hajek
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Updated License Show ChangesLicense
- https://creativecommons.org/licenses/by/4.0/
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Published
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Updated Description Show ChangesDescription
Final project poster presentation- This poster explores the processes that control meandering rivers, with a focus on chute and neck cutoffs. Using remote sensing, the study examines how cutoff type and frequency relate to river migration, sinuosity, and vegetation density. These insights contribute to a better understanding of river dynamics and have important implications for flood mitigation and water resource management.
- *Final project poster presentation.*
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Updated Work Title Show ChangesWork Title
Josephine Anderson 2025 REU Poster- Oh Chute!: Examining the Relationship Between Migration Rate and Cutoff Type in Meandering Rivers Using Remote Sensing
-
Updated Description Show ChangesDescription
- *Josephine Anderson 2025 REU Poster*
- This poster explores the processes that control meandering rivers, with a focus on chute and neck cutoffs. Using remote sensing, the study examines how cutoff type and frequency relate to river migration, sinuosity, and vegetation density. These insights contribute to a better understanding of river dynamics and have important implications for flood mitigation and water resource management.
- *Final project poster presentation.*
-
Updated Acknowledgments Show ChangesAcknowledgments
- Thank you to Dr. Anastasia Piliouras, Liz Tofte, Dr. Maureen Feineman, and the 2025 Penn State GeoPEERS REU program participants for their support and mentorship. This material is based upon work supported by the National Science Foundation under Grant No. EAR-2050463.
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Updated Creator Elizabeth Hajek
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Added Creator Josephine Anderson
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Updated Keyword, Description Show ChangesKeywordDescription
- 2025 REU Poster
*Josephine Anderson 2025 REU Poster*- This poster explores the processes that control meandering rivers, with a focus on chute and neck cutoffs. Using remote sensing, the study examines how cutoff type and frequency relate to river migration, sinuosity, and vegetation density. These insights contribute to a better understanding of river dynamics and have important implications for flood mitigation and water resource management.
- *Final project poster presentation.*
-
Updated Keyword, Description Show ChangesKeywordDescription
2025 REU Poster- 2025 REU
- This poster explores the processes that control meandering rivers, with a focus on chute and neck cutoffs. Using remote sensing, the study examines how cutoff type and frequency relate to river migration, sinuosity, and vegetation density. These insights contribute to a better understanding of river dynamics and have important implications for flood mitigation and water resource management.
*Final project poster presentation.*- *Josephine Anderson 2025 REU Poster*
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