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Control of nonlinear mechanical systems; theory and application.
Computational methods; multiscale modeling; MEMS, NEMS, nanofluidics.
Optical forces and optomechanics; micro-mechanical oscillators; sensors and actuators.
Metal plasticity; process modeling; simulation; and biomechanics.
Control of nonlinear and distributed parameter systems; nonlinear oscillations; network control; stability; stochastic multiscale methods.
Energy and environment; combustion; energetic materials; thermal radiation; optical properties; solid rocket propulsion.
Experimental fluid mechanics; turbulence; geophysical flows, microfluidics; development of advanced diagnostics.
Dynamical systems; complex networks; computational methods; biomechanics; robotics; contact modeling.
Control of complex systems, including multirate and asynchronous systems; hybrid systems; and distributed robotics.
Computer-aided design and manufacturing; product lifecycle management.
Computational modeling; nanoscale mechanical properties; energy storage and conversion; defect-property relationships.
Rheology; non-Newtonian fluid mechanics; biomaterial mechanics; design.
Nanomanufacturing; nanomechatronics; manufacturing automation and systems control; process planning; programmable machines.
Fluid mechanics; bioengineering.
Transport phenomena in biological and environmental systems; multiscale numerical methods; magnetic resonance imaging.
Spectroscopy of reacting flows and energetic materials; combustion diagnostics; metal combustion.
Computational mechanics with applications to fracture; fluid dynamics; nano and multiscale simulation; continuum-atomistic coupling; topology optimization.
Experimental and theoretical microfluidics; cell morphology and adhesion; biomechanics; structure and dynamics of tissues, foams, and other domain systems.
Robust adaptive control and estimation, networks of autonomous systems, game theory and applications of those in safety-critical systems of aerospace, mechanical, electrical, petroleum, and biomedical engineering.
Mechanics of materials; micro and nano mechanics; cellular mechanics; fluid-solid interaction; micro and nano device fabrication.
Musculoskeletal biomechanics of locomotion; assistive device design; powered exoskeletons.
Heat transfer and fluid mechanics with end-use energy applications.
Mechanics of materials; micromechanics; biomechanics; composite, biological, and nano materials; bone mechanics; composite interfaces; elasticity.
Nanomechanics of electronic and photonic materials; mechanics of nanostructures; mechanics and materials for photovoltaics.
Micro-manufacturing; micromachining process modeling; micro-Machine Tools (mMTs) and microfactories for manufacturing of precision parts; micro-assembly and automation; sustainable manufacturing.
Biomimetic engineered surfaces; micro/nanomanufacturing.
Nanotechnology, micro-manufacturing, micromechanical systems, surface engineering, heat transfer, and applications of new materials.
Energy systems and power generation with particular emphasis on combustion; reactive fluid mechanics; laser diagnostics.
Modeling of two-phase turbulent reacting flows; internal combustion engines; liquid atomization; and spray systems.
Combustion theory; chemically reacting flows; fluid mechanics; stability and bifurcation theory; asymptotic and perturbation methods; applied mathematics.
Nonlinear control; stochastic dynamics; game theory.
Nanoscale materials; nanoelectromechanical systems (NEMS); flexible electronics; nanobio interface.
Mechanics and transport in random and fractal media; non-classical thermomechanics; stochastic wave propagation; traumatic brain injury.
Compressible and incompressible fluid dynamics; fluid-structure interaction; turbulence combustion and computational fluid mechanics.
Computational and analytical studies of incompressible flow; applications to materials processing; vortex shedding; chemically reacting systems.
Mechanics of microelectromechanical systems (MEMS); nanoscale materials behavior; single cell mechanics.
Dynamics of complex fluids; microscale transport; electrokinetic phenomena; biophysical fluid dynamics.
Thermo-mechanical behavior of materials; phase transformations and shape memory.
Thermoelectric energy conversion physics, materials, and devices; thermal transport in hard and soft matter; electronics cooling technologies; picosecond acoustics.
Solid mechanics; elastic-plastic fracture mechanics; materials compatibility with hydrogen; micromechanics of solid propellant materials; finite element methods.
Multiphase, multimaterial, multicomponent theory and advanced simulation applied to complex high energy density materials.
Metals processing simulation; modeling of continuous casting; steel processing; numerical methods for solidification phenomena.
Solid and continuum mechanics; computational mechanics; and design optimization.
Optical microscopy; polarization vector beams; nano-and biophotonics.
Polymers and composite materials; quantitative modeling of processing/microstructure/property relationships; numerical methods.
Dynamics and vibrations; dynamical systems theory and bifurcations; non-smooth dynamics; system identification and structural health monitoring; structural acoustics; targeted energy transfer and energy harvesting.
Design, manufacture, characterization, and mechanical behavior of materials for bone replacement and repair; cell-material interactions.
Cytoskeletal biomechanics; mechanotransduction; bio-imaging of cytoskeletal structures and stress distribution in living cells.
Computational methods; multiscale time integration.
Compressible turbulence, aeroacoustics, and fluid-structure interaction
Micro-Electro-Mechanical System (MEMS) device design and fabrication.
Large scale multiphysics modeling and high performance computing
Tribology; nanotechnology; microtribology related to miniature systems; magnetic storage; surface characterization; friction/vibration interaction.
Materials processing, especially solidification; mathematical modeling; phase field models; bone remodeling.
Structural failure, fatigue, fracture, data acquisition technology.
Control of nonlinear mechanical systems; theory and application.
Computational methods; multiscale modeling; MEMS, NEMS, nanofluidics.
Optical forces and optomechanics; micro-mechanical oscillators; sensors and actuators.
Metal plasticity; process modeling; simulation; and biomechanics.
Control of nonlinear and distributed parameter systems; nonlinear oscillations; network control; stability; stochastic multiscale methods.
Compressible turbulence, aeroacoustics, and fluid-structure interaction
Energy and environment; combustion; energetic materials; thermal radiation; optical properties; solid rocket propulsion.
Experimental fluid mechanics; turbulence; geophysical flows, microfluidics; development of advanced diagnostics.
Dynamical systems; complex networks; computational methods; biomechanics; robotics; contact modeling.
Materials processing, especially solidification; mathematical modeling; phase field models; bone remodeling.
Structural failure, fatigue, fracture, data acquisition technology.
Control of complex systems, including multirate and asynchronous systems; hybrid systems; and distributed robotics.
Computer-aided design and manufacturing; product lifecycle management.
Computational modeling; nanoscale mechanical properties; energy storage and conversion; defect-property relationships.
Rheology; non-Newtonian fluid mechanics; biomaterial mechanics; design.
Nanomanufacturing; nanomechatronics; manufacturing automation and systems control; process planning; programmable machines.
Micro-Electro-Mechanical System (MEMS) device design and fabrication.
Fluid mechanics; bioengineering.
Transport phenomena in biological and environmental systems; multiscale numerical methods; magnetic resonance imaging.
Spectroscopy of reacting flows and energetic materials; combustion diagnostics; metal combustion.
Computational mechanics with applications to fracture; fluid dynamics; nano and multiscale simulation; continuum-atomistic coupling; topology optimization.
Experimental and theoretical microfluidics; cell morphology and adhesion; biomechanics; structure and dynamics of tissues, foams, and other domain systems.
Robust adaptive control and estimation, networks of autonomous systems, game theory and applications of those in safety-critical systems of aerospace, mechanical, electrical, petroleum, and biomedical engineering.
Mechanics of materials; micro and nano mechanics; cellular mechanics; fluid-solid interaction; micro and nano device fabrication.
Musculoskeletal biomechanics of locomotion; assistive device design; powered exoskeletons.
Heat transfer and fluid mechanics with end-use energy applications.
Mechanics of materials; micromechanics; biomechanics; composite, biological, and nano materials; bone mechanics; composite interfaces; elasticity.
Nanomechanics of electronic and photonic materials; mechanics of nanostructures; mechanics and materials for photovoltaics.
Micro-manufacturing; micromachining process modeling; micro-Machine Tools (mMTs) and microfactories for manufacturing of precision parts; micro-assembly and automation; sustainable manufacturing.
Biomimetic engineered surfaces; micro/nanomanufacturing.
Nanotechnology, micro-manufacturing, micromechanical systems, surface engineering, heat transfer, and applications of new materials.
Large scale multiphysics modeling and high performance computing
Energy systems and power generation with particular emphasis on combustion; reactive fluid mechanics; laser diagnostics.
Modeling of two-phase turbulent reacting flows; internal combustion engines; liquid atomization; and spray systems.
Combustion theory; chemically reacting flows; fluid mechanics; stability and bifurcation theory; asymptotic and perturbation methods; applied mathematics.
Nonlinear control; stochastic dynamics; game theory.
Nanoscale materials; nanoelectromechanical systems (NEMS); flexible electronics; nanobio interface.
Mechanics and transport in random and fractal media; non-classical thermomechanics; stochastic wave propagation; traumatic brain injury.
Compressible and incompressible fluid dynamics; fluid-structure interaction; turbulence combustion and computational fluid mechanics.
Computational and analytical studies of incompressible flow; applications to materials processing; vortex shedding; chemically reacting systems.
Tribology; nanotechnology; microtribology related to miniature systems; magnetic storage; surface characterization; friction/vibration interaction.
Mechanics of microelectromechanical systems (MEMS); nanoscale materials behavior; single cell mechanics.
Dynamics of complex fluids; microscale transport; electrokinetic phenomena; biophysical fluid dynamics.
Thermo-mechanical behavior of materials; phase transformations and shape memory.
Thermoelectric energy conversion physics, materials, and devices; thermal transport in hard and soft matter; electronics cooling technologies; picosecond acoustics.
Solid mechanics; elastic-plastic fracture mechanics; materials compatibility with hydrogen; micromechanics of solid propellant materials; finite element methods.
Multiphase, multimaterial, multicomponent theory and advanced simulation applied to complex high energy density materials.
Metals processing simulation; modeling of continuous casting; steel processing; numerical methods for solidification phenomena.
Solid and continuum mechanics; computational mechanics; and design optimization.
Optical microscopy; polarization vector beams; nano-and biophotonics.
Polymers and composite materials; quantitative modeling of processing/microstructure/property relationships; numerical methods.
Dynamics and vibrations; dynamical systems theory and bifurcations; non-smooth dynamics; system identification and structural health monitoring; structural acoustics; targeted energy transfer and energy harvesting.
Design, manufacture, characterization, and mechanical behavior of materials for bone replacement and repair; cell-material interactions.
Cytoskeletal biomechanics; mechanotransduction; bio-imaging of cytoskeletal structures and stress distribution in living cells.
Computational methods; multiscale time integration.