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Plasma Engineering Jobs in Indiana (NOW HIRING)

Welder/ Pipefitter

Fort Wayne, IN · On-site

$23 - $30/hr

Lays out work according to Engineering Drawings. * Sets up and operates gas welding machines, and plasma arc torches * Weld parts according to work orders, blueprint layouts and verbal instructions.

Welder/ Pipefitter

Fort Wayne, IN · On-site

$23 - $30/hr

Lays out work according to Engineering Drawings. * Sets up and operates gas welding machines, and plasma arc torches * Weld parts according to work orders, blueprint layouts and verbal instructions.

Lippert is a leading, global manufacturer and supplier of highly engineered products and customized ... This individual will be measuring, plasma cutting, and welding systems to produce sub-assemblies. A ...

Lippert is a leading, global manufacturer and supplier of highly engineered products and customized ... This individual will be measuring, plasma cutting, and welding systems to produce sub-assemblies. A ...

New

Lippert is a leading, global manufacturer and supplier of highly engineered products and customized ... This individual will be measuring, plasma cutting, and welding systems to produce sub-assemblies. A ...

New

Lippert is a leading, global manufacturer and supplier of highly engineered products and customized ... This individual will be measuring, plasma cutting, and welding systems to produce sub-assemblies. A ...

Lead Finishing Engineer

Greensburg, IN · On-site

$94K - $124K/yr

Qualifications Required • Bachelor's degree in Materials Science, Chemistry, Chemical Engineering ... Preferred • Experience with multiple PVD techniques (e.g., cathodic arc, Plasma-Enhanced CVD ...

Showing results 21-40

Plasma Engineering information

See Indiana salary details

$12

$30

$54

How much do plasma engineering jobs pay per hour?

As of Aug 15, 2026, the average hourly pay for plasma engineering in Indiana is $30.02, according to ZipRecruiter salary data. Most workers in this role earn between $19.23 and $36.15 per hour, depending on experience, location, and employer.

What is plasma engineering?

A Plasma Engineering job involves the study, design, and application of plasma—ionized gases with unique electrical properties. Plasma engineers work in industries such as aerospace, semiconductors, energy, and materials processing, developing technologies like plasma cutting, propulsion systems, and fusion energy. They apply principles of physics, electromagnetism, and fluid dynamics to create and optimize plasma-based systems. The role often requires expertise in simulations, diagnostics, and experimental techniques.

How much does a plasma engineer make?

A plasma engineer's salary typically ranges from $70,000 to $120,000 annually, depending on experience, education, and location. Senior roles or those with specialized skills in plasma physics or related tools may earn higher compensation. The job often requires knowledge of plasma systems, laboratory work, and relevant certifications.

What are the typical daily tasks and work environments for plasma engineering professionals?

Plasma Engineering professionals often split their time between laboratory settings, where they conduct experiments and operate plasma-generating equipment, and office environments, where they analyze data and develop designs or process improvements. Daily tasks can include calibrating and maintaining equipment, running simulations, interpreting results, and preparing technical reports. Collaboration is frequent, especially with material scientists, mechanical engineers, and production teams, to optimize plasma processes for applications like semiconductor manufacturing or materials coating. The work environment is typically fast-paced and innovative, providing opportunities to contribute to cutting-edge technologies and cross-functional projects.

What do plasma engineers do?

Plasma engineers design, develop, and maintain systems that generate and control plasma for applications such as manufacturing, research, and energy production. They work with specialized equipment, analyze plasma behavior, and ensure safety protocols are followed in high-voltage and vacuum environments. Strong knowledge of physics, materials science, and technical skills are essential for this role.

What are the key skills and qualifications needed to thrive in plasma engineering, and why are they important?

To thrive as a Plasma Engineer, you should have a strong background in physics or engineering, with expertise in plasma physics, materials science, and advanced mathematics, typically supported by at least a bachelor's or master's degree in a related field. Familiarity with plasma simulation software, laboratory diagnostic tools, and certifications in safety protocols for working with high-voltage or vacuum systems are often required. Analytical thinking, problem-solving abilities, and effective teamwork and communication skills will help you excel in diverse research or manufacturing environments. These competencies are vital for designing safe and efficient plasma processes, troubleshooting technical challenges, and collaborating on multidisciplinary projects.

What are the most commonly searched types of Plasma Engineering jobs in Indiana?

The most popular types of Plasma Engineering jobs in Indiana are:

Infographic showing various Plasma Engineering job openings in Indiana as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $62,446 per year, or $30 per hour.

Modeling & Simulation Engineer

Iron Will Ventures

Crane, IN • On-site

Full-time

Posted 3 days ago

New


Job description

About IWV

Iron Will Ventures is a cleared defense small business supporting the nation's highest-priority hypersonic flight test, missile defense, and launch operations missions. We deliver practitioner-grade technical, program, and acquisition support to DoW customers across the enterprise — including TRMC, MDA, JHTO, and the missile enterprise community.


Position Summary
Iron Will Ventures (IWV) seeks a Modeling & Simulation Engineer to support hypersonic and strike weapon system development, test planning, and analysis at NSWC Crane. The successful candidate will build and execute engagement- and engineering-level models — principally AFSIM and 6-DOF trajectory simulations — to inform flight test design, performance assessment, and weapon system integration decisions for DoD sponsors including OUSD(R&E)/TRMC, JHTO, and Navy program offices.


Key Responsibilities

  • Develop, modify, and execute AFSIM scenarios and platform/sensor/weapon models to support mission-level trade studies, campaign analysis, and capability gap assessment.
  • Build and validate 6-DOF flight dynamics models for hypersonic and tactical missile configurations; support aero database integration, GNC model insertion, and Monte Carlo dispersion analysis.
  • Generate trajectory products supporting flight test planning: nominal and dispersed trajectories, footprint and debris analysis inputs, range safety data packages, and instrumentation/coverage assessments.
  • Perform post-flight reconstruction and model validation against telemetry and range-collected data; document deltas and recommend model updates.
  • Support digital mission engineering workflows — model configuration control, data standards, automation of run matrices, and integration of M&S products into government decision artifacts.
  • Produce technical documentation, analysis briefs, and quick-turn responses for government leadership.
  • Coordinate with prime contractors, test ranges, and government technical leads; represent IWV in working groups and technical interchange meetings.


Required Qualifications

  • Ability to Obtain a DoD Secret clearance (TS/SCI eligible preferred).
  • Bachelor's degree in Aerospace, Mechanical, or Electrical Engineering, Physics, or Applied Mathematics.
  • 5+ years of hands-on M&S experience in a DoD or defense-industry environment.
  • Demonstrated AFSIM proficiency — scenario construction, model development, and results analysis (not solely end-user operation).
  • Demonstrated 6-DOF simulation experience for missiles, launch vehicles, or hypersonic vehicles.
  • Working proficiency in Python and/or MATLAB for data reduction, automation, and visualization.
  • Ability to work on-site at NSWC Crane and travel as required.


Desired Qualifications

  • Active DoD Secret clearance (TS/SCI eligible preferred).
  • Experience supporting hypersonic flight test programs (MACH-TB, MACH-XL, CPS, LRHW, ARRW, or equivalent).
  • AFSIM plugin/extension development in C++.
  • Familiarity with range safety analysis, flight termination, and launch approval processes.
  • Experience with aero prediction and trajectory tools (Missile DATCOM, POST, OTIS, TAOS, GHAME, or equivalent).
  • Exposure to threat modeling, EMS/plasma sheath effects, or seeker/RF performance modeling.
  • Prior SETA or A&AS support to a government program office.
  • M.S. in a relevant engineering discipline.


Travel

  • Up to 25% CONUS, primarily to test ranges and sponsor sites.

 

Iron Will Ventures Inc. is an equal opportunity employer. We value diversity and do not discriminate based on race, color, religion, sex, sexual orientation, gender identity, national origin, age, disability, veteran status, or any other protected status.