Naga Musunuri
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Also affiliated: Indiana Institute of Technology (2021–2023); New Jersey Institute of Technology (2013–2023)
Research Areas
Biography and Research Information
OverviewAI-generated summary
Naga Musunuri's research interests include fluid dynamics, specifically focusing on Marangoni flow induced by external factors such as raindrop impacts and solute sources in water bodies. Musunuri also investigates the transient velocity and temperature distributions during the evaporation of water drops on non-isothermal substrates. In addition to fundamental fluid mechanics, Musunuri has co-authored work on the development of Master's degrees in engineering, examining their role in enhancing graduate employability within specific regional contexts. This latter work reflects an interest in higher education and its connection to workforce development. Musunuri collaborates with Ying Shang and Mauricio Torres at the University of Arkansas – Fort Smith.
Metrics
- h-index: 2
- Publications: 30
- Citations: 6
Selected Publications
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Developing Master's Degrees in Engineering to Enhance Employability of Graduates in the Northeast Indiana Region (2026)
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Marangoni flow induced in a waterbody by the impact of a raindrop (2023)
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Transient velocity and temperature distributions in a water drop evaporating on a non-isothermal substrate (2021)Bulletin of the American Physical Society OpenAlex
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Solutocapillary Marangoni flow induced in a waterbody by a solute source (2021)
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Directed self-assembly of dielectrically polydisperse nanoparticle suspensions into cohesive hierarchical patterns (2020)APS Division of Fluid Dynamics Meeting Abstracts OpenAlex
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Dynamical behavior of electrorheological suspensions (2019)Bulletin of the American Physical Society OpenAlex
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Capillarity driven hydrophilous pollination in ruppia maritima l. (widgeon grass, ruppiaceae) (2018)Bulletin of the American Physical Society OpenAlex
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Flow induced on a waterbody by a source (2017)APS Division of Fluid Dynamics Meeting Abstracts OpenAlex
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Experimental and theoretical studies of the streaming flow due to the adsorption of particles at a liquid surface (2017)APS Division of Fluid Dynamics Meeting Abstracts OpenAlex
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Study on the dispersion of particles at a fluid-liquid interface and its application in hydrophilous pollination (2017)1 citation OpenAlex
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Studies of Flow Induced on a Water Surface due to the Impingement of a Drop or a Water Source (2017)
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Flow induced on a salt waterbody due to the impingement of a freshwater drop. (2017)Bulletin of the American Physical Society OpenAlex
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Numerical Simulations of Electric Field Driven Self-Assembly of Monolayers of Mixtures of Nanoparticles (2017)
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Electric field induced self-assembly of monolayers of gold nanoparticles for surface enhanced Raman scattering applications. (2017)Bulletin of the American Physical Society OpenAlex
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Flow induced on a salt waterbody due to the impingement of a freshwater drop or a water source (2017)
Collaboration Network
Top Collaborators
- Transient Flow Induced by the Adsorption of Particles
- Flow induced on a salt waterbody due to the impingement of a freshwater drop or a water source
- Marangoni flow induced in a waterbody by the impact of a raindrop
- PIV Measurement of the Transient Fluid Flow due to the Adsorption of Particles
- Fluid dynamics of two-dimensional pollination in Ruppia (widgeon grass)
Showing 5 of 21 shared publications
- Transient Flow Induced by the Adsorption of Particles
- Flow induced on a salt waterbody due to the impingement of a freshwater drop or a water source
- Marangoni flow induced in a waterbody by the impact of a raindrop
- Self-Assembly of Monolayers of Micron Sized Particles on Thin Liquid Films
- Transient Flow Induced by the Adsorption of Particles
Showing 5 of 15 shared publications
- Flow induced on a salt waterbody due to the impingement of a freshwater drop or a water source
- Self-Assembly of Monolayers of Mixtures of Particles
- Numerical simulations of electric field driven hierarchical self-assembly of monolayers of binary mixtures of particles
- Numerical Simulations of Electric Field Driven Self-Assembly of Monolayers of Mixtures of Nanoparticles
- Flow induced on a salt waterbody due to the impingement of a freshwater drop.
Showing 5 of 12 shared publications
- Flow induced on a salt waterbody due to the impingement of a freshwater drop or a water source
- Marangoni flow induced in a waterbody by the impact of a raindrop
- Flow induced on a salt waterbody due to the impingement of a freshwater drop.
- Studies of Flow Induced on a Water Surface due to the Impingement of a Drop or a Water Source
- Dynamical behavior of electrorheological suspensions
Showing 5 of 10 shared publications
- Fluid dynamics of two-dimensional pollination in Ruppia (widgeon grass)
- Fluid Dynamics of Hydrophilous Pollination in Ruppia (Widgeon Grass)
- Fluid dynamics of two-dimensional pollination in Ruppia maritima
- PIV measurements of the transient fluid flow due to the adsorption of particles
- Flow induced on a salt waterbody due to the impingement of a freshwater drop.
Showing 5 of 9 shared publications
- Flow induced on a salt waterbody due to the impingement of a freshwater drop or a water source
- Flow induced on a salt waterbody due to the impingement of a freshwater drop.
- Studies of Flow Induced on a Water Surface due to the Impingement of a Drop or a Water Source
- Solutocapillary Marangoni flow induced in a waterbody by a solute source
- Flow induced on a waterbody by a source
- Transient Flow Induced by the Adsorption of Particles
- Transient Flow Induced by the Adsorption of Particles
- Transient Flow due to the Adsorption of Particles
- Transient Flow Induced by the Adsorption of Particles
- Transient Flow Induced by the Adsorption of Particles
- Transient Flow Induced by the Adsorption of Particles
- Transient Flow due to the Adsorption of Particles
- Transient Flow Induced by the Adsorption of Particles
- Fluid dynamics of two-dimensional pollination in Ruppia (widgeon grass)
- Fluid Dynamics of Hydrophilous Pollination in Ruppia (Widgeon Grass)
- Fluid dynamics of two-dimensional pollination in Ruppia maritima
- Capillarity driven hydrophilous pollination in ruppia maritima l. (widgeon grass, ruppiaceae)
- Self-Assembly of Monolayers of Micron Sized Particles on Thin Liquid Films
- Transient Flow Induced by the Adsorption of Particles
- Experimental and theoretical studies of the streaming flow due to the adsorption of particles at a liquid surface
- Fluid dynamics of two-dimensional pollination in Ruppia (widgeon grass)
- Fluid dynamics of two-dimensional pollination in Ruppia maritima
- Capillarity driven hydrophilous pollination in ruppia maritima l. (widgeon grass, ruppiaceae)
- Electric field induced self-assembly of monolayers of gold nanoparticles for surface enhanced Raman scattering applications.
- Dynamical behavior of electrorheological suspensions
- Directed self-assembly of dielectrically polydisperse nanoparticle suspensions into cohesive hierarchical patterns
- Self-Assembly of Monolayers of Submicron Sized Particles on Thin Liquid Films
- Directed self-assembly of dielectrically polydisperse nanoparticle suspensions into cohesive hierarchical patterns
- Self-Assembly of Monolayers of Micron Sized Particles on Thin Liquid Films
- Self-Assembly of Monolayers of Micron Sized Particles on Thin Liquid Films
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