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Engineer V

General Atomics - Location not specified

Posted Jun 10, 2026

Benefits

Parental leave
Not verified
Non-birth-parent leave
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Family-building benefits
  • Fertility benefits: Not verified
  • Adoption assistance: Not verified
  • Surrogacy assistance: Not verified
Mental health support
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Relocation assistance
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Childcare support
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Learning budget
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Verification
Not verified checked Jun 7, 2026
Salary
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401(k) match
Reported from DOL Form 5500 industry filing (not employer-specific)

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Market context

U.S. role benchmark (BLS OEWS)
$111,944 U.S. median for this role
Projected growth (BLS Employment Projections)
+13.7% - Much faster than average

Matched to SOC 15-1252 - Data and ML aggregate by role bucket.

Source: U.S. Bureau of Labor Statistics, OEWS, May 2024 and Employment Projections, 2024-2034.

Role

Role function
Data From the posting source
Seniority
Mid From the posting source

Schedule

Shift type
Not verified
Weekend work
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Application

Cover letter
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Assessment
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Deadline
Not stated

Where they hire

State eligibility is not yet verified.

About this role

Engineer V General Atomics Aeronautical Systems, Inc. (GA-ASI), an affiliate of General Atomics, is a world leader in proven, reliable remotely piloted aircraft and tactical reconnaissance radars, as well as advanced high-resolution surveillance systems. We have an exciting opportunity for an experienced Project Engineer within our Advanced Programs group. Under limited supervision, this Project Engineer will scope and lead mission effectiveness analysis leading to unmanned aircraft system attributes. In addition, this Project Engineer may support technical development of competitive proposals for existing and new DoD customers. DUTIES AND RESPONSIBILITIES - Supports operation of engineering systems and documents any problems. - Crafts analysis plans and trade studies to derive aircraft system attributes and requirements to achieve desired mission effects. Analysis conducted in a simulation environment which includes aircraft performance models, threat models and mission effects models. - Establishes trade study criteria appropriate for the problem statement allowing multiple solutions to be evaluated for greatest overall benefit - Structures analysis methodology and milestones to perform increasingly complex analysis of alternatives, maturing the options showing the most promise until the final study is completed with final performance metrics determined - Understand unmanned aircraft platform performance tradeoffs such as weight, payload capacity, operational range, cost, survivability, kinetic and non-kinetic effects. - Familiarity with engineering tools such as Matlab, AFSIM, Simulink, Jira, Confluence or similar tools - Define approach to select relevant threat information, develop appropriate models for simulation and enhance threat models over time - Define approach to develop and improve aircraft and mission

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