Senior Loads and Dynamics Engineer

Posted Yesterday
Be an Early Applicant
Seattle, WA, USA
In-Office
95K-130K Annually
Senior level
Aerospace • Artificial Intelligence • Energy • Defense
The Role
Serve as technical authority for vehicle loads and dynamic environments across ground handling, ascent, separation, entry, landing, and reuse. Own load cases, build and reconcile structural dynamic models (FEM, modal, coupled loads) with test/flight data, define vibration/shock/acoustic environments, perform coupled loads and aeroelastic analyses, support test campaigns, investigate anomalies, and mentor junior engineers.
Summary Generated by Built In

Cowboy Space Corp. is building the infrastructure to power and connect the orbital economy. Our satellites operate in Low Earth Orbit to collect sunlight and enable a new class of capabilities—from powering on-orbit compute, to transmitting energy via infrared lasers (space-to-earth and space-to-space), to delivering secure, high-bandwidth optical data. By rethinking how energy and data are generated and distributed in space, we’re unlocking entirely new ways to operate both in orbit and on Earth.

Founded in 2024 by Baiju Bhatt (co-founder of Robinhood), Cowboy Space Corp. is backed by leading investors and built by a team from top aerospace and defense organizations. We’re moving quickly to solve complex technical challenges and build a new category of space infrastructure.

About the Role:

Serve as the technical authority for the loads and dynamic environments that define what the vehicle must survive. You'll own the load cases and dynamic models that drive structural sizing across ascent, stage separation, entry, landing, and reuse. As a senior individual contributor, you'll set the methodology, make the judgment calls on where to add fidelity and where to move fast, and raise the bar for the discipline by mentoring engineers and driving decisions across teams: ensuring the vehicle is neither over-built nor under-designed for the environments it actually sees.

Responsibilities

  • Own the vehicle loads as the discipline lead: quasi-static, transient, and dynamic load cases across ground handling, ascent, separation, entry, landing, and reuse.

  • Establish the methods, tools, and standards the loads and dynamics discipline works to.

  • Build and maintain structural dynamic models (FEM, modal, coupled loads) and reconcile them with test and flight data.

  • Define vibration, shock, acoustic, and random-vibe environments for components, mechanisms, and payloads.

  • Perform coupled loads analysis (CLA) and integrate propulsion, aero, GNC, and structural inputs into a consistent load set.

  • Deliver clear, timely load sets and interface requirements to structures, mechanisms, and propulsion teams.

  • Assess flutter, buffet, slosh, and other aeroelastic/coupled dynamic phenomena.

  • Support test planning and correlation—modal surveys, static and dynamic test campaigns—and update models from results.

  • Investigate anomalies and reconstruct flight loads from telemetry to improve future load predictions.

  • Mentor junior engineers and provide technical guidance across the structures and mechanisms teams.

Basic Qualifications:

  • Bachelor's degree in Aerospace, Mechanical, or related engineering field.

  • 8+ years of experience in loads, structural dynamics, or vibration analysis for flight hardware or high-performance systems.

  • Deep proficiency with finite element modeling and dynamic analysis (modal, transient, frequency response).

  • Demonstrated ownership of load cases and environments that drove the structural design of a flight vehicle or major system.

  • Proven ability to correlate models against test or flight data and adjust methodology accordingly.

Preferred Qualifications:

  • Advanced degree in a relevant engineering field.

  • Experience with launch vehicles or reusable flight systems.

  • Hands-on experience owning coupled loads analysis (CLA) campaigns.

  • Familiarity with aeroelasticity (flutter, buffet) and coupled phenomena.

  • Experience defining and correlating vibration, shock, and acoustic environments.

  • Proficiency with tools such as Adams, LS-DYNA, or equivalent, plus scripting (Python/MATLAB) for load-set processing and automation.

  • Experience supporting structural test campaigns and modal surveys.

  • Track record of mentoring engineers and setting technical direction without formal authority.

Compensation and Benefits

The salary range for this position is $95,,000 – $130,000 annually. The actual base salary offered will depend on factors such as job-related skills, experience, qualifications, and internal equity.

  • Equity in Cowboy Space Corp.

  • Employees and their eligible dependents may enroll in medical, dental, and vision insurance

  • 401(k) retirement savings plan

  • Paid time off

  • 10 paid holidays per calendar year

  • Paid parental leave

  • Relocation assistance if applicable

  • Daily lunch in the office and a fully stocked kitchen with beverages and snacks

ITAR Requirements

  • Export Control Requirement: To conform to U.S. Government space technology export regulations, including the International Traffic in Arms Regulations (ITAR), applicants must be a U.S. citizen, lawful permanent resident of the U.S., protected individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the U.S. Department of State. Learn more about ITAR here.

Disclaimer

This job description is a summary of the primary duties and responsibilities of the job and position. It is not intended to be a comprehensive or all-inclusive listing of duties and responsibilities. Contents are subject to change at Cowboy Space Corp.’s discretion.

Cowboy Space Corp. is an equal employment opportunity employer. We consider individuals for employment or promotion according to their skills, abilities and experience. Cowboy Space Corp. is committed to complying with all applicable laws prohibiting discrimination based on race, color, religious creed, age, national origin, ancestry, physical, mental or developmental disability, sex (which includes pregnancy, childbirth, breastfeeding and medical conditions relating to pregnancy, childbirth or breastfeeding), veteran status, military status, marital or registered domestic partnership status, medical condition (including cancer or genetic characteristics), genetic information, gender, gender identity, gender expression, sexual orientation, as well as any other category protected by federal, state or local laws.

Skills Required

  • Bachelor's degree in Aerospace, Mechanical, or related engineering field.
  • 8+ years of experience in loads, structural dynamics, or vibration analysis for flight hardware or high-performance systems.
  • Deep proficiency with finite element modeling and dynamic analysis (modal, transient, frequency response).
  • Demonstrated ownership of load cases and environments that drove the structural design of a flight vehicle or major system.
  • Proven ability to correlate models against test or flight data and adjust methodology accordingly.
  • Must meet ITAR eligibility (U.S. citizen, lawful permanent resident, protected individual, or eligible to obtain required authorizations).
  • Advanced degree in a relevant engineering field.
  • Experience with launch vehicles or reusable flight systems.
  • Hands-on experience owning coupled loads analysis (CLA) campaigns.
  • Familiarity with aeroelasticity (flutter, buffet) and coupled phenomena.
  • Experience defining and correlating vibration, shock, and acoustic environments.
  • Proficiency with tools such as Adams, LS-DYNA, plus scripting (Python/MATLAB) for load-set processing and automation.
  • Experience supporting structural test campaigns and modal surveys.
  • Track record of mentoring engineers and setting technical direction without formal authority.
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The Company
61 Employees
Year Founded: 2024

What We Do

Cowboy Space Corporation is an orbital infrastructure company building a space-based power grid for artificial intelligence. They develop vertically integrated systems, including solar-powered GPU data centers in Low Earth Orbit and purpose-built launch vehicles. By integrating the data center directly into the rocket's upper stage, the company aims to provide high-performance AI compute at a scale and speed that surpasses terrestrial energy grid capacities.

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