Preparing your Path…
Preparing your Path…
Path Catalog
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7801 Paths · page 282 / 781
This learning path equips manufacturing engineers with a systematic methodology to select the most appropriate manufacturing processes for a given product. It covers process capabilities, design for manufacturing, trade-off analysis, and economic evaluation, culminating in a structured selection framework.
This learning path equips machinists and engineers with the skills to program and operate CNC machine tools. Starting with machining fundamentals and safety, it progresses through G-code programming, CAM workflows, machine setup, and practical operation, culminating in troubleshooting and process optimization. The path emphasizes hands-on application and real-world problem-solving.
This learning path equips manufacturing engineers and managers with the skills to plan, execute, and control engineering projects within a manufacturing context. It covers project planning, cost control, team management, and the foundational manufacturing systems knowledge needed to make informed decisions.
This learning path equips students and professionals with the foundational knowledge to apply manufacturing engineering to humanitarian contexts. It covers core manufacturing concepts, low-cost production methods, design for emergency response, and considerations for local and sustainable implementation.
This learning path guides senior and graduate students through the principles and advanced technologies of remanufacturing and recycling within manufacturing engineering. It covers life-cycle management, component recovery, and recycling processes, emphasizing sustainable manufacturing practices.
This learning path guides senior and graduate engineering students through the principles and practical implementation of green and sustainable manufacturing. It covers energy efficiency, waste reduction, and eco-materials, providing a structured approach to integrating environmental considerations into manufacturing processes.
This path takes senior and graduate students from foundational manufacturing systems to advanced Industry 4.0 concepts, covering IoT, digital twins, cyber-physical systems, and data analytics. It emphasizes the integration of physical production with digital technologies and provides a career-oriented perspective on smart manufacturing.
This path covers the fundamental materials science and manufacturing processes for advanced fiber-reinforced composites. Learners will explore the key constituents, processing methods, and quality considerations for producing composite parts, with a focus on layup, autoclave curing, resin transfer molding, and filament winding.
A comprehensive learning path for senior and graduate students to understand semiconductor fabrication processes, covering wafer fabrication, lithography, etching, deposition, and the underlying materials science. The path builds from fundamental principles to advanced process integration and control.
This learning path equips senior engineering students with the knowledge and skills to apply robotics in manufacturing. It covers robot types, kinematics, programming, and integration into manufacturing systems, emphasizing practical applications and system-level thinking.