Purdue University

USA
7 Scholarships 198 Programs 3 Degree levels
Masters

Defense Engineering and Technology

Offered at Purdue University, USA
DegreeMasters
FieldMEng Defense Eng & Tech
Duration1 year
Tuition$29,194
B

Cost & earnings at Purdue University What students borrow here, and what they go on to earn

You borrow $19,500 median federal debt
You repay $222/mo over 10 years
Graduates earn $72,424 10 yrs after entry
Debt clears in 0.6 yrs of the salary premium
US Department of Education figures See the full breakdown →
B

Engineering graduates earn a median $88,982 Across 136 US programmes, two years after finishing

See the degree grade →

The Defense Engineering and Technology programme at Purdue University focuses on the science and engineering of energetic materials, from molecular-level design to system-level testing. Students learn how to develop safer, more stable energetic formulations and propulsion technologies for high-impact defence and aerospace applications.

Overview

The Defense Engineering and Technology program at Purdue University offers an in-depth exploration of the science and engineering behind energetic materials. This master's program emphasizes the design of safer and more stable energetic formulations and propulsion technologies, specifically for high-impact defense and aerospace applications. Students engage in both theoretical and practical aspects of defense engineering, equipping them with the skills needed to innovate in this critical field.

What you'll study

The curriculum is designed to provide a robust foundation in energetic materials and engineering design, featuring a blend of advanced coursework, laboratory work, and project-based learning. While specific modules may vary, the following areas are typically covered:

  • Core Modules:
    • Science and Engineering of Energetic Materials
    • Energetic Materials Design, Formulation, and Safety
    • Propulsion Design, Build, and Test
    • Chemical Engineering for Energetic Systems
    • Combustion and Diagnostics
  • Engineering and Applied Modules:
    • Rocket Propulsion
    • Turbomachinery
    • Mechanical Engineering for Propulsion Systems
    • Materials Characterisation
    • Synthesis and Formulation
  • Emerging Methods:
    • Additive Manufacturing for Energetic Applications
    • Nanotechnology and Sensor Development
    • Data-driven Approaches for Testing and Analysis
  • Capstone/Research Component: Students typically complete a capstone project, thesis, or applied research work as part of their degree requirements.

Entry requirements

  • Academic Background: A relevant bachelor’s degree in engineering, physical sciences, chemistry, materials science, or a closely related field.
  • Minimum GPA: A GPA of 3.0 on a 4.0 scale (or equivalent) based on the most recently conferred degree.
  • English Proficiency (choose one):
    • Duolingo English Test: 115
    • TOEFL iBT: 80
    • IELTS (Academic): 6.5
  • Required Documents:
    • Official transcripts
    • Resume/CV
    • Recommendation letter(s): 1 letter from a supervisor
  • Application Timing: Application deadlines may vary; candidates are encouraged to apply by the specified deadlines for their intended term.

Career prospects

Graduates of the Defense Engineering and Technology program can anticipate a wide range of career opportunities in both the defense and aerospace sectors. Potential roles include positions in research and development, project management, and technical consulting, where they can apply their knowledge of energetic materials and propulsion systems to real-world challenges. The skills acquired during the program also position graduates well for roles in government and industry, contributing to advancements in safety and technology in defense applications.

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Programme details are indicative and may change — always verify current information with the official university website before applying.