Mehrnaz Rouhi Youssefi, PhD

Mehrnaz Rouhi Youssefi, PhD

Senior Mechanics Architect @ Sentons

About Mehrnaz Rouhi Youssefi, PhD

Mehrnaz Rouhi Youssefi, PhD, is a Senior Mechanics Architect at Sentons in San Jose, California, where she has worked since 2019. She holds a PhD in Mechanical and Aerospace Engineering from Rutgers University and has expertise in experimental and computational fluid dynamics, microfluidics, and thermal analysis.

Work at Sentons

Mehrnaz Rouhi Youssefi has been serving as a Senior Mechanics Architect at Sentons since 2019. In this role, she applies her expertise in mechanics to contribute to the development of innovative technologies. Based in San Jose, California, she has accumulated five years of experience with the company, focusing on the integration of mechanical design principles within the organization's projects.

Education and Expertise

Mehrnaz Rouhi Youssefi holds a PhD in Mechanical and Aerospace Engineering from Rutgers University, which she completed from 2013 to 2016. She also earned a Master of Science in Mechanical Engineering from The University of Connecticut between 2008 and 2011. Her educational background includes a Bachelor of Science in Mechanical Engineering from the University of Tehran, obtained from 2004 to 2008. Her areas of expertise include Computational Fluid Dynamics (CFD), experimental methods, numerical methods, and analysis.

Background

Prior to her current position at Sentons, Mehrnaz Rouhi Youssefi worked at NextInput as a Mechanical Engineer from 2016 to 2019. She has also held various academic roles, including Research Assistant and Lecturer at Rutgers University and Research Assistant at the University of Connecticut. Her teaching experience includes serving as a Teaching Assistant at the University of Connecticut from 2008 to 2009.

Achievements

Throughout her career, Mehrnaz Rouhi Youssefi has developed significant expertise in Particle Image Velocimetry (PIV), shockwave/boundary layer interaction, thermal analysis, and Finite Element Analysis (FEA). Her research and practical experience in microfluidics and mechanics have contributed to advancements in her field, particularly during her tenure as a Research Assistant at Rutgers University and The University of Connecticut.

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