Path Category
Loading Path Category from the AllPath API…
Path Category
Loading Path Category from the AllPath API…
Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7808 Paths
7808 Paths · page 318 / 781
This learning path introduces the principles and practices of structural conservation for historic buildings. It covers the assessment of existing structures, traditional and modern materials, repair techniques, and the relevant standards and guidelines, providing a balanced understanding of engineering and heritage values.
This advanced learning path equips senior and graduate students in structural engineering with the knowledge to design resilient infrastructure that withstands disasters. It covers risk assessment, multi-hazard design, and recovery planning, with a focus on seismic and wind engineering. The path emphasizes understanding hazard interactions, performance-based design, and community resilience.
A comprehensive learning path for senior and graduate structural engineering students to design structures with minimal environmental impact. It covers sustainable design principles, green materials, lifecycle assessment, carbon footprint analysis, and adaptive reuse, culminating in an integrative capstone project.
This graduate-level path covers the fundamental theories and methods for analyzing and designing thin shell structures, including cylindrical shells and domes. It progresses from mathematical prerequisites through membrane and bending theories to practical design considerations.
This learning path equips senior and graduate students with the knowledge to design prestressed concrete structures. It covers fundamental principles, prestress losses, flexural and shear design, and anchorage zone detailing, building on reinforced concrete design concepts.
This advanced learning path equips senior and graduate students with the knowledge to assess, strengthen, and seismically retrofit existing concrete and steel structures. It covers condition assessment, material strengthening techniques (FRP, steel), and seismic retrofitting principles, integrating design and practical application.
This learning path equips senior or graduate students with the knowledge to design offshore structures, focusing on jacket platforms and floating systems. It covers essential structural analysis, fluid mechanics, wave load modeling, and corrosion protection, with practical applications in design.
This learning path takes senior and graduate students from the fundamental principles of tall building behavior through the design of advanced lateral load-resisting systems. It covers gravity and lateral load paths, structural dynamics, and culminates in the design of core, outrigger, and tube systems, with a focus on practical application and performance-based considerations.
This learning path equips senior and graduate students with the knowledge to design and analyze bridge structures. It covers bridge types, load modeling, structural analysis, and component design in concrete and steel, emphasizing the interconnections between these areas.
This learning path guides graduate students from finite element theory fundamentals to advanced nonlinear structural analysis using Abaqus. It covers modeling, meshing, nonlinearities, and post-processing, emphasizing practical application and career readiness.