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Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7811 Paths
7811 Paths · page 333 / 782
This path guides senior or graduate students through the essential knowledge and skills for developing embedded systems used in control and monitoring applications. Starting with foundational concepts in digital electronics and C programming, it progresses through microcontroller architecture, interfacing, real-time programming, and practical application development.
This advanced professional learning path equips power engineers with the knowledge to design and maintain power transformers, covering core principles, losses, cooling, tap changers, and diagnostic testing. It builds from fundamental electromagnetic concepts through to practical testing and maintenance strategies.
This learning path equips power engineers with the knowledge and skills to design electric power distribution systems for urban and industrial areas. It covers distribution system planning, feeder design, substation configuration, voltage drop analysis, and power factor correction, grounded in power system analysis fundamentals.
This path equips practicing engineers with the knowledge to design safe building electrical systems in compliance with the National Electrical Code (NEC). It covers essential circuit analysis, NEC structure, grounding, circuit sizing, and overcurrent protection, culminating in a capstone design project.
This advanced learning path equips senior and graduate electrical engineering students with the knowledge and skills to understand, analyze, and mitigate electromagnetic interference (EMI) in electronic systems. It covers EMI sources and coupling mechanisms, shielding, grounding, filtering, and relevant EMC standards, culminating in a practical design project.
This learning path equips practicing electrical engineers with systematic methods to assess and improve energy efficiency in industrial and commercial facilities. It covers energy audit types, measurement instruments, and efficiency improvements for lighting, motors, and HVAC systems, building on foundational electrical knowledge.
A comprehensive learning path for junior/senior electrical engineering students covering fundamental concepts of analog and digital communication systems. Starting from signals and systems, the path progresses through analog modulation, sampling and quantization, and digital modulation techniques, culminating in advanced topics like QAM and performance analysis.
This advanced learning path equips senior engineering students with a deep understanding of power system protection principles and relay operation. It covers fundamental concepts, key protection schemes (overcurrent, differential, distance), circuit breaker operation, and relay coordination, grounded in power system analysis. Learners will develop the skills to design, analyze, and coordinate protection systems for reliable power networks.
This learning path provides a comprehensive understanding of the electrical systems in electric and hybrid vehicles, covering battery technologies, electric motor drives, power electronics converters, and charging infrastructure. It is designed for senior or graduate students in electrical engineering seeking career skills in the EV industry.
This advanced learning path covers the fundamental principles of high voltage engineering, including breakdown mechanisms, generation techniques, measurement methods, and insulation coordination. It is designed for senior engineering students who need to understand and apply high voltage concepts in power systems and electrical equipment design.