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Internship Finite Element Analysis Fea Engineer Jobs in Panama City, FL

Perform mechanical analyses including finite element analysis (FEA), hydrodynamic modeling, and ... Generate and review engineering documentation, specifications, and technical data packages in ...

Primary Duties: * Assist in the design and analysis of water/wastewater treatment facilities ... Approximately 1 to 3 years of experience in engineering or related fields (internship experience ...

Engineering Intern

Panama City, FL · On-site

$15 - $19.50/hr

Internship Location: Panama City, FL Description CPH is a multi-disciplined Engineering and ... analysis/calculations, and construction documents. * Preparation of permit applications and ...

Trains and mentors patient services staff and interns as applicable * Participates in patient ... nutrient analysis programming Apply to Compass Group today! Click here to Learn More about the ...

Trains and mentors patient services staff and interns as applicable * Participates in patient ... nutrient analysis programming Apply to Compass Group today! Click here to Learn More about the ...

Trains and mentors patient services staff and interns as applicable * Participates in patient ... nutrient analysis programming Apply to Compass Group today! Click here to Learn More about the ...

Internship Finite Element Analysis Fea Engineer information

See Panama City, FL salary details

$12

$19

$27

How much do internship finite element analysis fea engineer jobs pay per hour?

As of May 27, 2026, the average hourly pay for internship finite element analysis fea engineer in Panama City, FL is $19.53, according to ZipRecruiter salary data. Most workers in this role earn between $16.11 and $21.68 per hour, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as an Internship Finite Element Analysis (FEA) Engineer, and why are they important?

To thrive as an Internship Finite Element Analysis (FEA) Engineer, you need a solid background in mechanical engineering principles, familiarity with finite element methods, and enrollment in or recent completion of a relevant engineering degree. Proficiency with FEA software such as ANSYS or Abaqus, and basic skills in CAD and programming languages like Python or MATLAB, are commonly expected. Strong analytical thinking, attention to detail, and effective communication help interns interpret results and present findings clearly. These skills ensure accurate simulations, effective teamwork, and meaningful engineering insights that contribute to product development.

What types of projects can an Internship Finite Element Analysis (FEA) Engineer expect to work on, and how does the role typically collaborate with other engineering teams?

As an Internship FEA Engineer, you can expect to work on projects involving the simulation and analysis of components or assemblies to assess structural integrity, thermal performance, or vibration characteristics. These projects often require close collaboration with design engineers to understand the requirements and constraints, as well as regular interaction with test engineers to validate simulation results with physical testing. Interns frequently participate in team meetings, present their findings, and contribute to the iterative design process, gaining exposure to both the technical and collaborative aspects of engineering. This supportive environment helps interns develop practical skills and a deeper understanding of how FEA contributes to real-world product development.

What is an Internship Finite Element Analysis (FEA) Engineer?

An Internship Finite Element Analysis (FEA) Engineer is a student or recent graduate who assists in using FEA software to analyze and simulate how products or materials respond to real-world forces, such as heat, vibration, or pressure. This role typically supports experienced engineers by preparing models, running simulations, interpreting results, and helping optimize designs. Interns gain valuable hands-on experience with industry tools and work on real engineering problems, preparing them for future careers in mechanical, aerospace, automotive, or civil engineering.

What is the difference between Internship Finite Element Analysis Fea Engineer vs Junior Mechanical Engineer?

AspectInternship Finite Element Analysis (FEA) EngineerJunior Mechanical Engineer
CredentialsEnrolled in or recent graduate of engineering program, familiarity with FEA softwareBachelor's degree in Mechanical Engineering or related field
Work EnvironmentInternship setting, focused on FEA tasks under supervisionEntry-level engineering role, involved in design, testing, and analysis
Industry UsageCommon in automotive, aerospace, manufacturing sectorsBroadly used across various engineering industries

While both roles involve engineering fundamentals, an Internship Finite Element Analysis (FEA) Engineer focuses specifically on FEA software and analysis tasks during an internship, whereas a Junior Mechanical Engineer has a broader scope including design, testing, and general mechanical engineering responsibilities. The internship provides specialized FEA experience, often as a stepping stone to full engineering roles.

What job categories do people searching Internship Finite Element Analysis Fea Engineer jobs in Panama City, FL look for? The top searched job categories for Internship Finite Element Analysis Fea Engineer jobs in Panama City, FL are:
What cities near Panama City, FL are hiring for Internship Finite Element Analysis Fea Engineer jobs? Cities near Panama City, FL with the most Internship Finite Element Analysis Fea Engineer job openings:
MECHANICAL ENGINEER

Full-time

Posted 8 hours ago


Job description

EPS Corporation is seeking a Mechanical Engineer to assist in the Design, develop, and test mechanical systems, components, and assemblies for undersea platforms including MK11 SEAL Delivery Vehicles (SDVs), SWCS, DCS, and related support equipmentJob Responsibilities: Design, develop, and test mechanical systems, components, and assemblies for undersea platforms including MK11 SEAL Delivery Vehicles (SDVs), SWCS, DCS, and related support equipment. Support fabrication, overhaul, refurbishment, reassembly, and verification of mechanical systems such as pressure vessels, enclosures, brackets, valves, and mounts. Perform mechanical analyses including finite element analysis (FEA), hydrodynamic modeling, and computational fluid dynamics (CFD) for submersible vehicle structures and components.

Generate and review engineering documentation, specifications, and technical data packages in accordance with MIL-STD-31000B and project design requirements. Support SOC-related tasking, ensuring all materials, welds, fittings, and documentation meet NAVSEA SS800-AG-MAN-010/P-9290 and NAVSEA S9086-AD-SOC-030 requirements. Provide support during prototype development, testing, and transition to production, including hands-on troubleshooting and field support as required.

Collaborate closely with electrical, systems, and software engineers to develop integrated multi-discipline solutions for mission-critical hardware. Participate in market surveys, materials research, cost studies, and performance assessments to support design decisions. Required Experience: Minimum 5 years of mechanical engineering experience, with demonstrated work supporting naval or DoD engineering projects-especially in submersibles or harsh environment systems.

Experience with 3D modeling and simulation tools such as SolidWorks, Creo, or AutoCAD for design and documentation. Hands-on experience supporting fabrication, machining, and testing of complex mechanical systems. Familiarity with SOC standards and inspection criteria for submersible components, pressure boundaries, and life-support-related hardware.

Working knowledge of military and NAVSEA specifications, including material selection, structural tolerancing, and environmental performance. Required Skills and Qualifications: Bachelor's degree in Mechanical Engineering or closely related field. U.S

Citizenship and active Secret Clearance required. Proficiency in design for manufacturability (DFM), GD&T, and technical drawing interpretation. Strong understanding of mechanical properties of materials, especially marine-grade metals and composites.

Ability to prepare and deliver detailed technical reports, presentations, and analyses. Strong interpersonal and problem-solving skills with the ability to operate effectively in a team-driven, cross-disciplinary environment.Job Responsibilities: Design, develop, and test mechanical systems, components, and assemblies for undersea platforms including MK11 SEAL Delivery Vehicles (SDVs), SWCS, DCS, and related support equipment. Support fabrication, overhaul, refurbishment, reassembly, and verification of mechanical systems such as pressure vessels, enclosures, brackets, valves, and mounts

Perform mechanical analyses including finite element analysis (FEA), hydrodynamic modeling, and computational fluid dynamics (CFD) for submersible vehicle structures and components. Generate and review engineering documentation, specifications, and technical data packages in accordance with MIL-STD-31000B and project design requirements. Support SOC-related tasking, ensuring all materials, welds, fittings, and documentation meet NAVSEA SS800-AG-MAN-010/P-9290 and NAVSEA S9086-AD-SOC-030 requirements.

Provide support during prototype development, testing, and transition to production, including hands-on troubleshooting and field support as required. Collaborate closely with electrical, systems, and software engineers to develop integrated multi-discipline solutions for mission-critical hardware. Participate in market surveys, materials research, cost studies, and performance assessments to support design decisions.

Required Experience: Minimum 5 years of mechanical engineering experience, with demonstrated work supporting naval or DoD engineering projects-especially in submersibles or harsh environment systems. Experience with 3D modeling and simulation tools such as SolidWorks, Creo, or AutoCAD for design and documentation. Hands-on experience supporting fabrication, machining, and testing of complex mechanical systems.

Familiarity with SOC standards and inspection criteria for submersible components, pressure boundaries, and life-support-related hardware. Working knowledge of military and NAVSEA specifications, including material selection, structural tolerancing, and environmental performance. Required Skills and Qualifications: Bachelor's degree in Mechanical Engineering or closely related field.

U.S. Citizenship and active Secret Clearance required. Proficiency in design for manufacturability (DFM), GD&T, and technical drawing interpretation

Strong understanding of mechanical properties of materials, especially marine-grade metals and composites. Ability to prepare and deliver detailed technical reports, presentations, and analyses. Strong interpersonal and problem-solving skills with the ability to operate effectively in a team-driven, cross-disciplinary environment.