Preparing your Path…
Preparing your Path…
Path Catalog
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7801 Paths · page 304 / 781
This learning path equips senior engineering students with the knowledge and skills to apply Model-Based Systems Engineering (MBSE) using the Systems Modeling Language (SysML). Starting from systems thinking fundamentals, it progresses through SysML diagram types, modeling methodology, and practical application with industry tools like MagicDraw and Rhapsody.
A comprehensive learning path for senior university students to design advanced system architectures, covering foundational principles, modular design, service-oriented architecture, trade-off analysis, and practical application through case studies and projects.
This learning path introduces junior university students to the core principles and quantitative methods of systems reliability engineering. It covers basic probability and statistics foundations, reliability models for components and systems, failure analysis techniques, and the related concepts of maintainability and availability, culminating in a practical project that applies these concepts.
This learning path introduces junior university students to the principles and practices of systems engineering applied to software systems. It covers the software development lifecycle, architecture, agile methodologies, DevOps practices, and validation, building from basic programming knowledge to a holistic understanding of engineering software systems.
This learning path equips senior university students with the knowledge and skills to manage systems engineering projects effectively. It covers foundational systems engineering principles, project planning, technical reviews, metrics, and communication, culminating in a capstone project.
This learning path equips junior systems engineering students with the knowledge and skills to integrate human factors into system design. It covers human factors fundamentals, usability, human-centered design, and human-machine interfaces, with a focus on ergonomics. Through a structured sequence of concepts and applications, learners will be able to apply human-centered principles to real-world design problems.
This learning path equips junior university students with the skills to identify, analyze, mitigate, and monitor risks in systems engineering projects. It introduces foundational project management and systems engineering concepts, then focuses on risk management processes and decision analysis techniques.
This learning path equips junior systems engineering students with the foundational concepts and methods of decision analysis, enabling them to structure complex decisions, incorporate uncertainty and risk, and apply multi-criteria and utility-based approaches to systems engineering problems.
This learning path introduces junior university students to the core concepts of systems engineering lifecycle management, from initial concept through disposal. It covers lifecycle phases, stakeholder identification, phase gates, and transition processes, providing a structured approach to managing complex systems.
This learning path guides junior systems engineering students through the essential knowledge and skills for planning and executing system integration and verification. Starting with systems architecture fundamentals, it progresses through integration planning, verification methods, and validation, culminating in a capstone project that applies these concepts in a realistic scenario.