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Naval Architect Intern Jobs in Indiana (NOW HIRING)

OR Current registration as an Engineer Intern (EI), Engineer in Training (EIT), or licensure as a ... architecture, computer science, mathematics, hydrology, or geology, may be accepted in lieu of a ...

OR Current registration as an Engineer Intern (EI), Engineer in Training (EIT), or licensure as a ... architecture, computer science, mathematics, hydrology, or geology, may be accepted in lieu of a ...

ENGINEER

Crane, IN · On-site

$125K/yr

OR Current registration as an Engineer Intern (EI), Engineer in Training (EIT), or licensure as a ... architecture, computer science, mathematics, hydrology, or geology, may be accepted in lieu of a ...

Naval Architect Intern information

See Indiana salary details

$11

$21

$36

How much do naval architect intern jobs pay per hour?

As of Aug 17, 2026, the average hourly pay for naval architect intern in Indiana is $21.88, according to ZipRecruiter salary data. Most workers in this role earn between $17.40 and $25.38 per hour, depending on experience, location, and employer.

What is a naval architect intern?

A Naval Architect Intern assists in the design, analysis, and development of ships and marine structures. They work under the guidance of experienced naval architects, using software tools to create designs, conduct stability and strength assessments, and support project documentation. Interns may also participate in testing, research, and reviewing regulatory compliance. The role provides hands-on experience in marine engineering and naval architecture while enhancing technical and problem-solving skills.

What kind of projects and responsibilities can I expect as a naval architect intern?

As a Naval Architect Intern, you will typically assist in drafting ship designs, performing stability and structural calculations, and preparing technical documentation under the guidance of experienced engineers. Your daily tasks may include using CAD software to modify plans, running simulations for vessel performance, and collaborating with multidisciplinary teams on real-world marine construction projects. Interns often participate in meetings with engineers and clients, gaining exposure to different phases of the design and construction workflow. This hands-on experience helps you build practical skills and develop a strong understanding of industry standards, preparing you for future roles in naval architecture.

What are the key skills and qualifications needed to thrive as a naval architect intern?

To thrive as a Naval Architect Intern, you need a solid understanding of marine engineering principles, ship design, and proficiency in related coursework, typically supported by progress toward a degree in naval architecture, ocean engineering, or a similar field. Familiarity with computer-aided design (CAD) software like AutoCAD or Rhino, as well as simulation and modeling tools, is often expected. Strong analytical thinking, attention to detail, effective teamwork, and clear communication skills help set candidates apart. These abilities ensure accurate project contributions, facilitate collaboration on complex engineering tasks, and support the successful execution of ship design projects.

What are the most commonly searched types of Naval Architect jobs in Indiana?

The most popular types of Naval Architect jobs in Indiana are:

What job categories do people searching Naval Architect Intern jobs in Indiana look for?

The top searched job categories for Naval Architect Intern jobs in Indiana are:


Job description

You will serve as an ENGINEER/SCIENTIST in the Global Deterrence & Defense Department (GX), Missile Systems Hardware and Test Division (GXW), Missile Test Branch (GXWZ) of NAVAL SURFACE WARFARE CENTER.
The ND-05 pay band encompasses positions equivalent to GS-14 and GS-15.
This position is part of the Warfare Centers Personnel Demonstration Project.
Qualifications:In addition to the Basic Requirements for this position, your resume must also demonstrate at least one year of specialized experience at or equivalent to the ND-04 (GS-12/13 equivalent pay band in the Federal service or equivalent experience in the private or public sector. Specialized experience must demonstrate the following: analyzing and evaluating technical project resource requirements to develop, plan, and execute Hypersonic Technology project schedule, milestones, and deliverables to improve efficiency and execution of Science and Technology (S&T) maturation efforts.
Additional qualification information can be found from the following Office of Personnel Management website:
https://www.opm.gov/policy-data-oversight/classification-qualifications/general-schedule-qualification-standards/#url=List-by-Occupational-Series
AND https://www.opm.gov/policy-data-oversight/classification-qualifications/general-schedule-qualification-standards/0800/files/all-professional-engineering-positions-0800.pdf
FOR 0801: Professional Engineering Series
FOR 1301: General Physical Science
FOR 1501: General Mathematics and Statistics Series
FOR 1515: Operations Research Series
FOR 1550: Computer Science Series
Experience refers to paid and unpaid experience, including volunteer work done through National Service programs (e.g., professional, philanthropic, religious, spiritual, community, student, social). Volunteer work helps build critical competencies, knowledge, and skills and can provide valuable training and experience that translates directly to paid employment.Education:Applicants must meet the following basic education requirements of the Office of Personnel Management (OPM) Qualifications Standards Manual:
FOR 0801:Successful completion of a professional engineering degree. To be acceptable, the program must: (1) lead to a bachelor's degree (or higher) in a school of engineering with at least one program accredited by the Accreditation Board for Engineering and Technology (ABET); or (2) include differential and integral calculus and courses (more advanced than first-year physics and chemistry) in five of the following seven areas of engineering science or physics: (a) statics, dynamics; (b) strength of materials (stress-strain relationships); (c) fluid mechanics, hydraulics; (d) thermodynamics; (e) electrical fields and circuits; (f) nature and properties of materials (relating particle and aggregate structure to properties); and (g) any other comparable area of fundamental engineering science or physics, such as optics, heat transfer, soil mechanics, or electronics. Such education must demonstrate the knowledge, skills, and abilities necessary to do the work of the position.
OR
Current registration as an Engineer Intern (EI), Engineer in Training (EIT), or licensure as a Professional Engineer (PE) by any State, the District of Columbia, Guam, or Puerto Rico. Absent other means of qualifying under this standard, those applicants who achieved such registration by means other than written test (e.g., State grandfather or eminence provisions) are eligible only for positions that are within or closely related to the specialty field of their registration For more information about EI and EIT registration requirements, please visit the National Society of Professional Engineers website at: http://www.nspe.org
OR
Evidence of having successfully passed the Fundamentals of Engineering (FE) examination or any other written test required for professional registration by an engineering licensure board in the various States, the District of Columbia, Guam, and Puerto Rico The FE examination is not administered by the U. S. Office of Personnel Management. For more information, please visit: http://www.nspe.org/Licensure/HowtoGetLicensed/index.html.
OR
Successful completion of at least 60 semester hours of courses in the physical, mathematical, and engineering sciences and in engineering that included the courses specified in the basic requirements under paragraph A (above). The courses must be fully acceptable toward meeting the requirements of an engineering program as described in paragraph A (above)
OR
Successful completion of a curriculum leading to a bachelor's degree in an appropriate scientific field, e.g., engineering technology, physics, chemistry, architecture, computer science, mathematics, hydrology, or geology, may be accepted in lieu of a bachelor's degree in engineering, provided the applicant has had at least one year of professional engineering experience acquired under professional engineering supervision and guidance. Ordinarily, there should be either an established plan of intensive training to develop professional engineering competence, or several years of prior professional engineering-type experience, e.g., in interdisciplinary positions.
FOR 1301:
A. Successful completion of a bachelor's degree or higher in physical science, engineering, or mathematics that included 24 semester hours in physical science and/or related engineering science such as mechanics, dynamics, properties of materials, and electronics.
OR
B. Have a combination of education and experience with education equivalent to one of the majors shown above that included at least 24 semester hours in physical science and/or related engineering science, plus appropriate experience or additional education.
FOR 1501:
A. Successful completion of bachelor's or higher degree in mathematics, statistics, or actuarial science.
OR
B. Have a combination of experience and education achieved from courses equivalent to a major field of study in mathematics, statistics, or actuarial science, plus additional education or appropriate experience.
FOR 1515:
A. Successful completion of a bachelor's degree in operations research.
OR
B. Successful completion of a bachelor's or higher degree with at least 24 semester hours in a combination of operations research, mathematics, probability, statistics, mathematical logic, science, or subject-matter courses requiring substantial competence in college-level mathematics or statistics. At least 3 of the 24 semester hours must have been in calculus.
FOR 1550:
A.
Successful completion of a bachelor's degree in computer science.
OR
B. Successful completion of a bachelor's or higher degree with 30 semester hours in a combination of mathematics, statistics, and computer science. At least 15 of these 30 semester hours were in a combination of statistics and mathematics that included differential and integral calculus.Employment Type: OTHER