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Aerospace Graduate Jobs (NOW HIRING)

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Aerospace Graduate information

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$13

$26

$50

How much do aerospace graduate jobs pay per hour?

As of Jun 6, 2026, the average hourly pay for aerospace graduate in the United States is $26.86, according to ZipRecruiter salary data. Most workers in this role earn between $18.51 and $30.77 per hour, depending on experience, location, and employer.

What are aerospace graduates?

Aerospace graduates are individuals who have completed a degree in aerospace engineering or a related field, such as aeronautical or astronautical engineering. They possess knowledge and skills in the design, development, testing, and maintenance of aircraft, spacecraft, satellites, and related systems. Aerospace graduates often work in industries like aviation, defense, research, and space exploration, contributing to technological advancements and ensuring the safety and efficiency of flight vehicles.

What is the difference between Aerospace Graduate vs Aerospace Engineer?

AspectAerospace GraduateAerospace Engineer
Required CredentialsDegree in aerospace, mechanical, or related field; internship experienceBachelor's or master's in aerospace engineering; professional licensure may be preferred
Work EnvironmentEntry-level, training, and internship roles in labs or design teamsDesign, analysis, testing, and project management in aerospace companies or research facilities
Employer & Industry UsageInternships, entry-level positions, graduate programs in aerospace firmsFull-time engineering roles in aerospace manufacturing, defense, or space agencies

The main difference between an Aerospace Graduate and an Aerospace Engineer is experience and responsibility level. An Aerospace Graduate is typically an entry-level individual with a relevant degree, focusing on learning and supporting projects. An Aerospace Engineer has more experience, often holds a professional license, and takes on complex design, analysis, and project management tasks within the aerospace industry.

What are the key skills and qualifications needed to thrive as an Aerospace Graduate, and why are they important?

To thrive as an Aerospace Graduate, you need a solid background in engineering principles, mathematics, and physics, typically supported by a relevant degree such as aerospace engineering. Familiarity with CAD software, simulation tools, and industry standards like MATLAB and CATIA is highly valued. Strong problem-solving abilities, teamwork, and effective communication skills help you excel in multidisciplinary project environments. These skills and qualities are crucial for designing innovative solutions and ensuring safety and precision in the aerospace industry.

What are typical projects or responsibilities assigned to Aerospace Graduates during their first year on the job?

As an Aerospace Graduate, you can expect to be involved in a mix of hands-on and analytical tasks such as assisting with component design, supporting testing and analysis of aerospace systems, and participating in team meetings for ongoing projects. You may be assigned to work on specific modules within a larger project, such as aerodynamic testing, structural analysis, or software development for simulations. Collaboration with experienced engineers and cross-functional teams is common, providing valuable learning opportunities. Over time, you’ll gain more responsibility and autonomy, often leading to involvement in more complex projects or even small-scale project management.
More about Aerospace Graduate jobs
What cities are hiring for Aerospace Graduate jobs? Cities with the most Aerospace Graduate job openings:
What states have the most Aerospace Graduate jobs? States with the most job openings for Aerospace Graduate jobs include:
Infographic showing various Aerospace Graduate job openings in the United States as of May 2026, with employment types broken down into 94% Full Time, and 6% Part Time. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $55,862 per year, or $26.9 per hour.

$154K/yr

Other

This job post has expired today. Applications are no longer accepted.


Job description

As a Space Reactors Lead System Engineer, you will lead systems engineering for NASA's lunar reactor and space nuclear systems, directing multidisciplinary teams across NASA, industry, and government agencies. You will develop and tailor systems engineering approaches to integrate complex aerospace systems, including space fission systems, while working closely with program management, engineering leads, and contractors to define requirements, interfaces, and verification plans.Qualifications:In addition to the Basic Education Requirement (in the Education section below), to qualify for this position you must meet the requirements below and have one year of specialized experience equivalent to the next lower grade, which has equipped you with the particular competencies needed to successfully perform the duties of the position described above.
NASA utilizes OPM-approved qualification and rating requirements specific for Aerospace Technology (AST) positions which recognizes NASA's unique aerospace work. The specific qualifications and minimum education requirements are further described below and within the education section of the job announcement.
To qualify at the GS-15 level, you must have one year of directly related specialized experience equivalent to the GS-14 level:
  • Developing and negotiating requirements and interfaces for complex space systems, with emphasis on lunar surface systems including launch and lander transportation;
  • Leading systems engineering and integration activities for major aerospace projects, including flight system development, testing, verification, and validation, and providing process tailoring recommendations to project leadership;
  • Providing systems engineering leadership on a major spaceflight effort requiring multi-center coordination and sustained engagement with other government agencies.

Your resume must include a clear and detailed narrative description, in your own words, of how you meet the required specialized experience. Experience statements copied from a position description, vacancy announcement or other reference material constitutes plagiarism and may result in disqualification and losing consideration for the job.
NASA prohibits the use of artificial intelligence (AI) or AI-assisted tool in drafting application and assessment responses. Please visit https://www.nasa.gov/careers/how-to-apply/#Artificial-Intelligence to review NASA's guidance on the use of AI tools during the application process.
Education:Basic Education Requirement: You must have successfully completed a bachelor's degree with a major in one of the following:
a) Engineering from a college or university that has ABET accredited engineering programs
b) Physical Science, Mathematics, Life Science or other field of Science
c) Computer Science that included 30 semester hours or 45 quarter hours of course work in any combination of mathematics, statistics and computer science with at least half of those hours in mathematics and statistics courses that included differential and integral calculus; and that provided an in-depth knowledge of theoretical and practical applications of computer science, including digital computer system architecture and system software organization, the representation and transformation of information structures, and the theoretical models for such representations and transformations.
If you did not complete a qualifying bachelor's degree, you may be eligible if you have obtained a graduate degree in an AST qualifying field, as listed above.
Degrees in engineering technology are not considered qualifying for this position.
Engineering degrees earned within the United States: Engineering degrees earned within the United States must be from a college or university that has at least one ABET accredited engineering program. To find out if a school has at least one ABET accredited program, please visit http://www.abet.org.
Engineering degrees earned outside the United States: Engineering degrees earned outside the United States must be recognized by a Mutual Recognition Agreement (MRA), often known as accords. These are non-governmental agreements among organizations that accredit academic degree programs. MRAs recognize the substantial equivalence of mature accreditation systems and programs accredited by signatory organizations within their jurisdictions. For a listing of Signatories, please visit, https://www.abet.org/global-presence/mutual-recognition-agreements/is-your-program-recognized/.
Science and other related degrees earned within the United States: Science and other related degrees must have been awarded from colleges or universities that are accredited by recognized accrediting organizations. For a list of schools that meet this criteria, go to http://ope.ed.gov/accreditation/.
Science and other related degrees earned outside the United States: If you are using education completed in foreign colleges or universities to meet the qualification requirements, you must show that the education credentials have been evaluated by a private organization that specializes in interpretation of foreign education programs. These education credentials must be deemed equivalent to that gained in an accredited U.S. education program; or full credit has been given for the courses at a U.S. accredited college or university. For further information, visit: https://sites.ed.gov/international/recognition-of-foreign-qualifications/.
All degrees must have been received in the year of, or any year subsequent to the original date of accreditation.Employment Type: OTHER