Neekita Joshi Data-verified
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
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Biography and Research Information
OverviewAI-generated summary
Neekita Joshi's research focuses on hydrological modeling and climate change impacts. Her work includes the application of HEC-RAS and HEC-HMS models to simulate floodplain inundation and runoff for various river systems in the United States. She has investigated the projected future flooding patterns of rivers like the Wabash River using bias-corrected climate data. Joshi's research also examines the relationship between climate phenomena, such as ENSO, and groundwater levels, as well as the effects of sea level changes along the US coast. Additionally, her publications include studies on forest management and regeneration in the Central Himalaya region of India, focusing on species composition and vegetation structure.
Metrics
- h-index: 9
- Publications: 17
- Citations: 201
Selected Publications
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Whole genome sequencing and functional annotation of Fusarium oxysporum f. sp. lentis to unravel virulence and secondary metabolite biosynthesis gene clusters (2025)
Collaboration Network
Top Collaborators
- Coupled 1D and 2D HEC-RAS Floodplain Modeling of Pecos River in New Mexico
- Assessment of Floodplain Inundation Mapping of Davenport City in Iowa Using Civil Geo-HECRAS
- Analyzing the Effects of Short-Term Persistence and Shift in Sea Level Records along the US Coast
- Analyzing the Association between ENSO and Groundwater Rise in the South Atlantic-Gulf Region in the Southeastern United States
- Projected Future Flooding Pattern of Wabash River in Indiana and Fountain Creek in Colorado: An Assessment Utilizing Bias-Corrected CMIP6 Climate Data
Showing 5 of 6 shared publications
- Coupled 1D and 2D HEC-RAS Floodplain Modeling of Pecos River in New Mexico
- Projected Future Flooding Pattern of Wabash River in Indiana and Fountain Creek in Colorado: An Assessment Utilizing Bias-Corrected CMIP6 Climate Data
- Application of the HEC-HMS Model for Runoff Simulation of Big Muddy River, Illinois
- Coupled 1D and 2D HEC-RAS Floodplain Modeling of Pecos River in New Mexico
- Assessment of Floodplain Inundation Mapping of Davenport City in Iowa Using Civil Geo-HECRAS
- Application of the HEC-HMS Model for Runoff Simulation of Big Muddy River, Illinois
- Coupled 1D and 2D HEC-RAS Floodplain Modeling of Pecos River in New Mexico
- Assessment of Floodplain Inundation Mapping of Davenport City in Iowa Using Civil Geo-HECRAS
- Coupled 1D and 2D HEC-RAS Floodplain Modeling of Pecos River in New Mexico
- Assessment of Floodplain Inundation Mapping of Davenport City in Iowa Using Civil Geo-HECRAS
- Analyzing the Effects of Short-Term Persistence and Shift in Sea Level Records along the US Coast
- Analyzing the Effects of Short-Term Persistence and Shift in Sea Level Records along the US Coast
- Analyzing the Effects of Short-Term Persistence and Shift in Sea Level Records along the US Coast
- Coupled 1D and 2D HEC-RAS Floodplain Modeling of Pecos River in New Mexico
- Coupled 1D and 2D HEC-RAS Floodplain Modeling of Pecos River in New Mexico
- Assessment of Floodplain Inundation Mapping of Davenport City in Iowa Using Civil Geo-HECRAS
- Assessment of Floodplain Inundation Mapping of Davenport City in Iowa Using Civil Geo-HECRAS
- Application of the HEC-HMS Model for Runoff Simulation of Big Muddy River, Illinois
- Application of the HEC-HMS Model for Runoff Simulation of Big Muddy River, Illinois
- Whole genome sequencing and functional annotation of Fusarium oxysporum f. sp. lentis to unravel virulence and secondary metabolite biosynthesis gene clusters
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