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Aerospace Engineer Graduate Jobs in Colorado (NOW HIRING)

Senior Manufacturing Engineer

Berthoud, CO ยท On-site

$105K - $130K/yr

Bachelor's or Graduate degree in Mechanical, Industrial, or Aerospace Engineering. * 5+ years experience designing or manufacturing high reliability hardware and complex assemblies * Familiarity with ...

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Aerospace Engineer Graduate information

What is an aerospace engineer graduate?

An Aerospace Engineer Graduate job is an entry-level position for recent graduates in aerospace engineering. It typically involves assisting in the design, analysis, testing, and production of aircraft, spacecraft, or related systems. Graduates may work on aerodynamics, propulsion, materials, or structural components under the guidance of senior engineers. These roles help build practical experience and technical skills necessary for career growth in the aerospace industry.

What are some typical career paths and advancement opportunities for an aerospace engineer graduate?

As an Aerospace Engineer Graduate, you often start in entry-level engineering roles, working alongside senior engineers on design, analysis, and testing projects. Over time, you can progress to specialized roles in areas such as aerodynamics, systems engineering, or propulsion, or move into project management and leadership positions. Many graduates also have opportunities to pursue further education or professional certifications (like the Professional Engineer license) to advance their careers. Aerospace companies frequently support ongoing training and encourage involvement in multidisciplinary teams, giving you the chance to develop new skills and take on increased responsibility as you gain experience.

What are the key skills and qualifications needed to thrive as an aerospace engineer graduate, and why are they important?

Aerospace Engineer Graduates need a solid grasp of aerodynamics, propulsion, structural analysis, and mathematics, usually supported by a bachelor's degree in aerospace engineering or a related field. Familiarity with CAD software, computational fluid dynamics (CFD) tools, finite element analysis (FEA), and industry standards or certifications like EIT is important. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills set candidates apart. These competencies are vital to ensure safety, innovation, and collaboration in the complex and regulated aerospace industry.

How much do graduate aerospace engineers make?

Graduate aerospace engineers typically earn between $65,000 and $75,000 annually, depending on location, employer, and level of experience. Entry-level positions often require knowledge of CAD software, aerodynamics, and systems analysis, which can influence starting salaries.

What do aerospace engineer graduates do after graduation?

Aerospace engineering graduates typically pursue entry-level positions in aircraft, spacecraft, or defense industries, working on design, testing, and manufacturing of aerospace systems. They often use CAD software, perform simulations, and may obtain professional engineering licenses to advance their careers.

What are the most commonly searched types of Aerospace Engineer Graduate jobs in Colorado?

The most popular types of Aerospace Engineer Graduate jobs in Colorado are:

What cities in Colorado are hiring for Aerospace Engineer Graduate jobs?

Cities in Colorado with the most Aerospace Engineer Graduate job openings:

Infographic showing various Aerospace Engineer Graduate job openings in Colorado as of August 2026, with employment types broken down into 100% Full Time. Highlights an 67% In-person, and 33% Remote job distribution.

Recent Graduate - Guidance, Navigation, and Control Engineer

Katalyst Space Technologies

Broomfield, CO โ€ข On-site

Full-time

Medical, Dental, Vision, PTO

Posted 7 days ago


Job description

Katalyst Description:
Katalyst is an American technology company focused on dynamic space operations. We are building a fleet of dual-use multipurpose robotic space vehicles to create the future where maneuvering, upgrading, refueling, resupply and exploration are as routine as they are on Earth. Getting to space and overcoming the gravity well is only half the story. What you do there is the future. We are not building the trains. We are building the machines that lay down the tracks. By developing the foundational capabilities that make sustained, responsive operations possible, we enable a new era of space exploration that strengthens national security and ensures freedom of action in an increasingly contested domain.
Katalyst Culture:
Working at Katalyst is intense, hands-on, and deeply rewarding. You'll take real ownership and see your work move from concept to operations in an environment where the problems are hard and the impact is real. We value humility, craftsmanship, and doing things the right way, even when it's harder. You'll work closely with thoughtful, driven teammates who push each other to do their best.
What You'll Do
  • Contribute directly to the design, development, analysis, integration, test, and operation of spacecraft Guidance, Navigation & Control systems.
  • Own well-scoped GNC problems from definition through modeling, algorithm development, simulation, test, documentation, and closure with support from senior engineers.
  • Work hands-on with simulation environments, flight and test data, hardware-in-the-loop or software-in-the-loop tools, sensor and actuator interfaces, and mission-analysis outputs.
  • Participate in design reviews, test campaigns, anomaly investigations, and mission-readiness activities; communicate GNC performance, risks, assumptions, and decisions clearly.
  • Collaborate across software, avionics, mechanical, propulsion, systems, and mission operations to understand interfaces and system-level impacts on GNC performance.
  • Build engineering judgment by comparing analytical models and simulations against test or operational data, identifying discrepancies, and iterating toward reliable flight performance.
  • Document models, algorithms, assumptions, requirements, interfaces, Monte Carlo results, test results, procedures, and technical decisions so others can review and reproduce the work.
  • Take increasing ownership as technical capability grows, progressing from supervised analysis and implementation tasks toward independent feature-, algorithm-, or subsystem-level responsibility.
  • Support spacecraft mission execution by helping translate mission objectives and constraints into credible GNC analyses, algorithms, test plans, and operational recommendations.

What We're Looking For
Required
  • Bachelor's degree completed, or expected before start date, in Aerospace Engineering, Mechanical Engineering, Electrical Engineering, Applied Math, Physics, Robotics, or a closely related technical field.
  • Strong academic or project-based grounding in rigid-body dynamics, controls, estimation, navigation, orbital mechanics, numerical methods, or related GNC fundamentals, with the ability to explain technical reasoning from first principles.
  • Demonstrated hands-on GNC experience through internships, research, student spacecraft or robotics teams, capstone projects, personal projects, laboratories, or prior employment.
  • Ability to break down ambiguous GNC problems, identify assumptions, build appropriate models, make reasonable tradeoffs, and validate work through simulation, test, or data.
  • Clear written and verbal technical communication, including the ability to explain what was personally modeled, coded, analyzed, tuned, tested, or debugged versus what was completed by a team.
  • Comfort learning new spacecraft dynamics, sensors, actuators, software tools, and mission concepts quickly in an environment where responsibilities may evolve with program needs.
  • Ability to collaborate closely with software, avionics, propulsion, mechanical, systems, and mission-operations engineers and accept direct technical feedback without losing ownership of the problem.
  • Ability to comply with applicable export-control requirements and customer-access restrictions.

Your Ideal Background
Preferred
  • Internship, research, co-op, or project experience in spacecraft GNC, flight dynamics, robotics, autonomous systems, aerospace, defense technology, or another controls- or estimation-intensive environment.
  • Experience taking a GNC model, algorithm, or controller from analysis into simulation or test and using the results to drive changes.
  • Exposure to dynamics, feedback control, state estimation, navigation, orbital mechanics, trajectory analysis, simulation, Monte Carlo analysis, MATLAB/Simulink, Python, or C/C++.
  • Additional Requirements: Must be willing to work hands-on in the office, lab, integration, or test environment as required and to support occasional extended hours during critical test or mission activities.

Compensation and Benefits: Your base salary will be determined on a case-by-case basis and may vary based on the following considerations: job-related knowledge and skills, education, and experience. The anticipated salary range for this role is $80,000 - $105,000 annually.
Base salary is just one part of your total rewards package at Katalyst. You will also be eligible for long-term incentives, in the form of the Employee Stock Option and Equity Plan, as well as a relocation bonus and other discretionary bonuses. You will also receive access to comprehensive medical, vision, and dental coverage, and unlimited Paid Time Off.
At Katalyst our work on projects involving the U.S. Department of Defense requires adherence to International Traffic in Arms Regulations (ITAR), 22 C.F.R. Parts 120-130, which requires compliance with U.S. export laws before allowing employees to perform certain positions. Currently, our available roles necessitate access to ITAR-controlled information, and as a result, Katalyst would have to ensure any non-US person is authorized access to ITAR information before the commencement of employment. We are committed to equal employment opportunities and all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, or national origin.