Research Areas
Biomedical Subjects
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Biography and Research Information
OverviewAI-generated summary
Seyed Mohammad Taghavi's research investigates fluid dynamics, particularly focusing on the behavior of non-Newtonian fluids and displacement flows in various channel geometries. His work has explored the stagnation-point flow of upper-convected Maxwell fluids and magnetohydrodynamic flows of viscoelastic fluids in converging/diverging channels. He has also studied buoyancy-dominated displacement flows in near-horizontal channels, including the viscous limit and incomplete fluid-fluid displacement of yield stress fluids.
Further research by Taghavi delves into in vivo predictive dissolution, examining the effects of buffer systems, such as bicarbonate and phosphate buffers, on the dissolution of weak acids and bases. This includes transport analysis of CO2 and bicarbonate buffer systems within biological contexts. His scholarly output is substantial, with 191 total publications and a h-index of 26, indicating a significant body of work. He is recognized as a highly cited researcher, signifying the impact of his contributions to his fields.
Metrics
- h-index: 26
- Publications: 191
- Citations: 2,458
Positions
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Professor 2014–presentUniversité Laval Chemical Engineering ORCID
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ProfessorUniversity of Arkansas at Fayetteville ORCID
Selected Publications
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Investigating the efficiency of InGaN p-n-p-n homojunction solar cells (2025)
Collaboration Network
Top Collaborators
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
- Investigating the efficiency of InGaN p-n-p-n homojunction solar cells
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