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Mechanical Engineering

Raudel Avila

Assistant Professor, Mechanical Engineering

Member, Ken Kennedy Institute

Public Rice profile source

Average rating

3.3

10 temporary mock ratings

Difficulty

3.7

course-linked average

Courses

5

in seeded sections

Public profile

Research areas

Dr. Avila’s research centers on modeling and simulation of bioelectronics for health care and biomedical applications. His research laboratory aims to develop a theoretical and computational framework to study the scalability, packaging, power limitations, tissue interactions and energy absorption in bioelectronic devices. He is interested in developing bioelectronic design concepts to yield ingenious mechanical capabilities with sufficient electromagnetic efficiency at the material-level and device-level for wireless signal sensing, mechanics manipulation, clinical imaging, and energy harvesting applications. Inspired by the potential to advance patient care by levering engineering concepts, Dr. Avila’s research aims to expand bioelectronics capabilities by combining mechanics, materials, and electromagnetics design in emerging applications including dissolvable pacemakers, sweat collection microfluidic devices, ultra-soft biosensors for NICU and PICU patients, implantable optogenetic devices, bioresorbable temperature sensors and pacemakers, miniaturized pressure sensors for prosthetics, and drug delivery technologies.

Courses taught

MECH 202

Mechanics/Statics

Mechanics is the branch of the physical sciences that deals with the response of bodies to the action of forces and is based on the implementation of Newton’s laws. This class is divided into two sections: study of rigid bodies in equilibrium; and strength of materials. Fundamental concepts such as equilibrium, stress and strain, deformations and displacements, elasticity and inelasticity, strain energy, and load-carrying capacity will be covered.

Mechanical EngineeringNone3 credits
3.99.5hAvila, Raudel, Elliott, Matthew, Yavas, Denizhan

MECH 490

Mech Eng Research Projects

Independent investigation of a specific topic or problem in mechanical engineering. Research under the direction of a selected faculty member. Repeatable for Credit.

Mechanical EngineeringNone1-4 credits
4.17.2hAvila, Raudel, Brake, Matthew, Davydov, Sasha, Dugnani, Roberto, Elliott, Matthew, Fregly, BJ, Ghonasgi, Keya, Ghorbel, Fathi, Higgs, C. Fred, Kong, Yong Lin, Lillehoj, Peter, Moreto, Jose, O'Malley, Marcia, Preston, Daniel, Sanchez, Vanessa, Schaefer, Laura, Tezduyar, Tayfun, Trevas, David, Wehmeyer, Geoff, Yavas, Denizhan

MECH 611

Independent Study

Repeatable for Credit.

Mechanical EngineeringNone1-9 credits
3.36.3hAvila, Raudel, Brake, Matthew, Davydov, Sasha, Fregly, BJ, Ghonasgi, Keya, Ghorbel, Fathi, Higgs, C. Fred, Kong, Yong Lin, Lillehoj, Peter, O'Malley, Marcia, Preston, Daniel, Sanchez, Vanessa, Spanos, Pol, Tezduyar, Tayfun, Wehmeyer, Geoff

MECH 612

Independent Study

Repeatable for Credit.

Mechanical EngineeringNone1-9 credits
3.18.1hAvila, Raudel

MECH 800

Research And Thesis

This course is for MS or PhD students working on their thesis research. Repeatable for Credit.

Mechanical EngineeringNone1-15 credits
3.27.4hAvila, Raudel, Brake, Matthew, Davydov, Sasha, Fregly, BJ, Ghonasgi, Keya, Ghorbel, Fathi, Higgs, C. Fred, Kong, Yong Lin, Lillehoj, Peter, O'Malley, Marcia, Preston, Daniel, Sanchez, Vanessa, Schaefer, Laura, Spanos, Pol, Tezduyar, Tayfun, Wehmeyer, Geoff

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