Todd Harman


  • Phone: (801) 585-5145
  • Email: t.harman@utah.edu
  • Office: 2556 MEK

Computational Fluid Dynamics and Fluid Structure Interaction
Supersonic flows
Large scale simulations

Jacob Hochhalter



Research Interests:
Structural Materials
Finite Element Analysis
Digital Image Correlation
Uncertainty Propagation
Fatigue & Fracture
Google Scholar Citations

Jungkyu (Jay) Kim



Research Interests:
Microengineered ocular systems
Heart valve-on-a-chip for mechanobiological studies
Microfabricated space instruments for life detection
Biosensors and Bioelectronics
Dynamics and control of biomedical systems
Point-of-care diagnostics for medical diagnostics
Google Scholar Citations

Owen Kingstedt



Mechanics of materials for extreme environments
Mutli-length and time scale experimentation
Interfacial effects on macroscopic properties
Dynamic fracture and failure of advanced materials
Google Scholar Citations

Yong Lin Kong


  • Email: yong.kong@utah.edu
  • Office: 1543 MEK

Research Interests:
Additive manufacturing
Nanomaterials-based devices
Biomedical devices and ingestible electronics
Personal Website
Google Scholar Citations

Kam K. Leang



Research Interests:
Dynamic systems and control
Autonomous systems and robotics
Nanopositioning
Electroactive materials
Mechatronics
Google Scholar Citations

Tommaso Lenzi



Acting Director, Ergonomics and Safety Program, Rocky Mountain Center for Occupational and Environmental Health
Research Interests:
Wearable robotics
Biomechatronics
Robotic limb prostheses and exoskeletons
Rehabilitation engineering
Google Scholar Citations

Debra Mascaro


  • Phone: (801) 581-7687
  • Email: dmascaro@mech.utah.edu
  • Office: 1560B MEK

Academic Advising
Lecturer

Stephen Mascaro


  • Phone: (801) 581-7228
  • Email: smascaro@eng.utah.edu
  • Office: 1151 MEK

Research/Teaching Interests:
Robotics and mechatronics
System dynamics and control

Google Scholar Citations

M Dillon


  • Phone: (801) 581-5032
  • Email: m.dillon@utah.edu
  • Office: 2543 MEK

Research Interests:
Experimental fluid dynamics with an emphasis on pollutant dispersion, turbulent mixing, and high Reynolds number turbulent boundary layer physics.
Development of experimental techniques and sensors for fundamental fluid dynamic and atmospheric measurements.