Preparing your Path…
Preparing your Path…
Path Catalog
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7801 Paths · page 316 / 781
This learning path equips graduate students with the knowledge and skills to apply monitoring systems for assessing structural health. It covers structural dynamics fundamentals, sensor technologies, data acquisition, signal processing, damage detection algorithms, and practical applications.
This learning path introduces structural engineering students and professionals to bamboo as a sustainable building material, covering its material properties, treatment, connections, and structural design. It also explores alternative materials for context and comparison, emphasizing material basics and selection criteria.
This path covers the fundamental knowledge and design principles for glass structures, from material properties to connection design, suitable for graduate students with a structural engineering background.
This advanced graduate-level path equips learners with the knowledge and skills to apply performance-based seismic design (PBSD) to structures. It covers performance objectives, nonlinear analysis methods, acceptance criteria, and culminates in a practical design exercise.
This advanced learning path equips practicing engineers with the knowledge to design special structural systems, focusing on wind and seismic loads, foundation interaction, and connection detailing. It builds from structural analysis and dynamics fundamentals to specialized design considerations, emphasizing practical application and code-based design.
This learning path equips graduate and professional engineers with the knowledge to understand, analyze, and prevent progressive collapse in structures. It covers fundamental concepts, analysis methods, design strategies, and relevant codes, emphasizing robustness and alternate load paths.
This learning path equips construction engineers with the knowledge and skills to design safe and efficient temporary structures, including formwork, shoring, scaffolding, and falsework. It covers load determination, structural analysis, material selection, and safety considerations, progressing from foundational principles to advanced design applications.
This advanced learning path equips practicing engineers with the knowledge to design industrial steel buildings, focusing on crane girders, heavy loads, mezzanines, and foundations. It covers load determination, structural analysis, member design, and connection detailing, with an emphasis on practical application and code compliance.
A focused learning path for engineers and managers to develop the core project management skills needed to lead structural engineering projects. It covers project planning, scheduling, cost estimation, communication, design coordination, risk management, and quality assurance, emphasizing the unique challenges of structural engineering.
A professional learning path for practicing engineers to investigate structural failures and deficiencies. It covers failure modes, investigation methodology, evidence collection, analysis techniques, and legal aspects, culminating in a capstone project.