Preparing your Path…
Preparing your Path…
Path Catalog
Data is pulled live from GET /api/v1/paths, and only Paths with a published version are listed.
7801 Paths · page 323 / 781
This learning path equips senior or graduate civil engineering students with the knowledge and skills to design structures that can withstand seismic forces. It covers seismic hazard assessment, structural dynamics, response spectra, ductile detailing, and base isolation, ensuring a comprehensive understanding of earthquake-resistant design principles.
A comprehensive learning path covering the design and analysis of bridge structures, from structural analysis fundamentals to advanced topics in bridge engineering, including loads, analysis methods, and design of key components.
This learning path guides senior and graduate civil engineering students through the systematic application of finite element methods (FEM) to civil engineering problems. It covers essential continuum mechanics, element formulations, meshing, boundary conditions, solution techniques, and result interpretation, with a focus on structural and geotechnical applications.
This learning path equips senior civil engineering students with the skills to model, analyze, and interpret structures using SAP2000. It covers prerequisite structural analysis concepts, the SAP2000 interface, modeling techniques, load application, linear and nonlinear analysis, results interpretation, and an introduction to design and optimization.
This advanced learning path equips senior and graduate civil engineering students with the knowledge and skills to analyze structures subjected to dynamic loads, including free and forced vibrations, damping, and seismic response. It systematically builds from fundamental vibration theory to practical response spectrum analysis, emphasizing the physical understanding and mathematical tools essential for structural dynamics.
This graduate-level path covers advanced topics in soil mechanics and foundation engineering, focusing on slope stability, earth pressure, retaining walls, and liquefaction. It builds from fundamental soil behavior to advanced analysis and design, emphasizing real-world applications and current engineering practice.
This graduate-level learning path builds a rigorous theoretical foundation for structural analysis, progressing from the principles of virtual work and energy methods to matrix structural analysis and nonlinear analysis. It emphasizes the mathematical and mechanical underpinnings essential for advanced research and professional practice.
This advanced learning path equips senior civil engineering students with the knowledge to design hydraulic structures for water management, covering dams, spillways, canals, stormwater management, and irrigation. It integrates hydraulics, hydrology, and structural design principles, emphasizing safety, sustainability, and practical application.
This comprehensive learning path guides senior civil engineering students through the systematic design of flexible and rigid pavements. It covers essential soil mechanics, traffic load analysis, material characterization, AASHTO design procedures, and drainage considerations, culminating in the practical application of both pavement types.
This learning path equips senior civil engineering students with the knowledge and skills to design shallow and deep foundations. It covers essential soil mechanics, bearing capacity, settlement analysis, and the design of spread footings, pile foundations, and caissons, integrating practical considerations for real-world applications.