Staff Loads & Dynamics Analysis Engineer

Ursa Major · Remote · Engineering

Posted 2026-08-06

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As a Staff Loads and Dynamics Analysis Engineer, you will primarily focus on load development across vehicles and propulsion systems.  Your secondary focus will either be Global Finite Element Modeling or GN&C. You will be exposed to multiple vehicles, systems, and engines, along with the unique challenges each present. We are looking for experienced analysts who bring new skills and best practices from their prior experience to Ursa and who, in time, will mentor others. You will be expected to lead verification and validation efforts and to provide proactive feedback to our design team based on the results of your work. Lastly, as Ursa ramps up its production rate and begins development on new engine platforms, you will be expected to assess nonconforming hardware, introduce approaches that could improve our team’s efficiency, and potentially venture into engine stress analysis to support others in our multi-disciplinary analysis team. You will report to our Propulsion Analysis Team Lead.

Responsibilities:

You will perform loads development for vehicles and engine programs

You will lead load spectrum development for service life assessment

You will perform vehicle dynamics analysis

You will verify and validate your models

You will work closely with our test team to request the instrumentation necessary to anchor our analytical models

You will support GFEM development for vehicles and propulsion systems

You will propagate loads to vehicle and engine components

You will collaborate with other engineering teams to develop our systems while ensuring they meet requirements and comply with the structural standards we follow

You will collaborate with our manufacturing team to assess nonconforming hardware for development and flight components and provide recommended dispositions and repairs

You will improve our analytical methods and seek out new approaches and tools

You will provide professional development, mentorship, and technical guidance to peers

Minimum Experience/Requirements:

B.S. degree in mechanical, aerospace engineering, or a comparable field

8+ years of experience performing L&D analysis

Comfortable working in a fast-paced, startup environment

Expertise in dynamic analysis methods (structural dynamics, dynamic loads,  acoustics , modal, random vibration, shock response)

Working experience in loads development for vehicle and/or engine applications

Experience anchoring analytical models to physical testing

Ideal Experience/Requirements:

M.S. degree or higher in Mechanical, Aerospace Engineering, or a comparable field, ideally focusing on solid mechanics, fatigue, fracture, or structural dynamics

Experience with flutter analysis

GFEM development and model grounding experience

Knowledge of turbomachinery-related analytical methods (e.g., generating Campbell diagrams to assess margins on rotordynamics or structural modes or rotating hardware).

High Cycle Fatigue Analysis (HCF, crack initiation predicted by a stress-life / SN approach)

Low Cycle Fatigue Analysis (LCF, crack initiation predicted by a strain-life / e-N approach)

Experience performing Finite Element Analysis (FEA / FEM) using commercial codes (e.g., ANSYS, Abaqus, or NASTRAN-based solvers)

Experience with Femap/Nastran

Fracture analysis (crack growth / safe-life and assessing for instability via LEFM, ideally with prior experience using NASGRO)

Experience with the ANSYS FEA suite

A strong theoretical background in heat transfer, fluid mechanics, and/or compressible flow

Prior experience working on safety-critical systems in production environments

Prior professional experience working on either rocketry or turbomachinery

Experience supporting failure investigations and root-cause analysis

A track record of working efficiently in fast-paced engineering environments

A track record of effective oral and written communications to support your recommendations

Thermal-Structural static analysis (particularly dealing with nonlinear materials and large strains

Fluid analysis (e.g. Computational Fluid Dynamics / CFD or 1-D transient analysis using SINDA/FLUINT or ROCETS)

Knowledge of composite materials, insulation, and ablative thermal protection systems

Colorado law requires us to tell you the base compensation range of this role, which is $140,000 - $170,000, determined by your education, experience, knowledge, skills, and abilities. What we can’t quantify for you are the exciting challenges, supportive team, and amazing culture we enjoy.

Classification: Full-time Exempt

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