Bachelor’s degree in mechanical engineering, aerospace engineering, physics, or mathematics
1+ years of work experience in dynamics either from industry, research, internships or academic projects
Master’s degree in mechanical engineering, aerospace engineering, physics, or mathematics
Strong understanding of low and high frequency dynamics (vibration, shock, modal testing)
Experience with testing and measurements
Experience with finite element analysis software (e.g. FEMAP, Nastran)
Software development experience in Python
Strong knowledge of digital signal processing, statistics, and structural mechanics
Capable of identifying and solving complex problems with little to no supervision or direction
Excellent communication skills of analysis and test insights
Ability to work in a fast-paced, unstructured start-up environment
Exposure to coupled loads analysis (CLA) and Craig-Bampton/superelement model reduction techniques
Exposure to jitter and pointing performance analysis and Monte Carlo methods for dispersion modeling
Familiarity with rigid-body dynamics and GNC-coupled analysis concepts
Exposure to multibody dynamics simulation concepts, including rigid-body dynamics; familiarity with LS-DYNA is a plus
Exposure to vibroacoustic analysis concepts (e.g., patch method, Statistical Energy Analysis, Boundary Element Method)
Familiarity with HALT/HASS testing concepts and dynamics-driven PCBA-level failure mechanisms
Exposure to shared analysis tooling practices, including version control