Flight Sciences Software Engineer

Executive Recruiting GroupSan Francisco, CA
8h

About The Position

We are seeking a Flight Sciences Software Engineer who enjoys building robust engineering tools that directly impact hardware design. You thrive at the intersection of software and mechanical engineering, and you’re comfortable collaborating with structural, loads, and aero teams to translate physics into scalable, reliable code. You think in systems, care deeply about performance and usability, and take pride in writing clean, well-structured Python that engineers trust for critical design decisions. You’re motivated by hard technical problems—whether that’s implementing aeroelastic solution sequences, building composite stress analysis tools, or architecting databases that make complex loads data accessible and actionable. WHAT YOU’LL DO: You will work closely with system owners across loads, flight dynamics, and structures to design and build the internal software backbone that enables multidisciplinary design optimization across the aircraft. Your tools will directly shape how we analyze, iterate, and converge on flight-ready hardware.

Requirements

  • 5+ years of experience in software engineering, development, or related field
  • Substantial experience in Python, including building engineering or scientific computing tools. Familiarity with Fortran is a plus
  • Background or familiarity in mechanical engineering, aerospace engineering, or a related technical discipline
  • Ambition to work in a fast-paced environment

Responsibilities

  • Develop and maintain Python-based stress analysis templates, including composite plate buckling, classical laminate theory (CLT), and composite failure theory implementations
  • Create and own a scalable loads database system that makes loads analysis data readily accessible to stress analysts and design teams
  • Implement aeroelastic solution sequences as part of a custom-built loads analysis tool
  • Build reusable, well-documented libraries that enable multidisciplinary design optimization (MDO) workflows
  • Partner closely with mechanical and aerospace engineers to translate analysis methods into production-quality software
  • Continuously improve performance, reliability, and automation of internal engineering toolchains
  • Build flight dynamics simulation tools and develop interfaces for analysts across GNC, loads, and flight dynamics
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