Preparing your Path…
Preparing your Path…
Path Catalog
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7801 Paths · page 324 / 781
This learning path guides senior civil engineering students through the design of reinforced concrete members for flexure, shear, and compression, following ACI 318 principles. It covers material properties, analysis methods, code provisions, and detailing, culminating in the design of beams, slabs, columns, and footings.
This learning path equips senior civil engineering students with the knowledge and skills to analyze complex structural systems using matrix stiffness, flexibility, and plastic analysis methods. Beginning with fundamental concepts, the path progresses through matrix algebra, structural idealization, and force/displacement methods, culminating in advanced applications and nonlinear behavior.
This learning path equips junior civil engineering students with the core principles of construction project management. It covers the project lifecycle, scheduling techniques (CPM/PERT), cost estimation, and contract management, preparing learners for practical application in the industry.
A systematic learning path for junior civil/environmental engineering students covering water quality, drinking water treatment, wastewater treatment, and solid waste management. It builds on essential chemistry and fluid mechanics foundations and progresses from fundamental principles to process design and integration.
This learning path introduces junior civil engineering students to the fundamentals of transportation engineering, covering traffic flow theory, geometric design of highways, and pavement design. It builds from basic concepts to intermediate applications, emphasizing the integration of planning, design, and performance evaluation.
This learning path guides junior civil engineering students through the fundamental principles and practical applications of water flow, covering open channel hydraulics, hydraulic structures, and hydrological processes. It builds from fluid mechanics basics to advanced topics like flood routing, emphasizing the connections between natural and engineered systems.
This learning path covers the essential principles of fluid mechanics applied to civil engineering, including hydrostatics, Bernoulli's equation, pipe flow, and open channel flow. It starts with foundational calculus and physics concepts, then progresses through fluid properties and core principles, culminating in practical applications relevant to civil engineering design.
A structured learning path for junior civil engineering students to understand soil behavior and engineering properties. It covers soil classification, compaction, permeability, shear strength, and consolidation, building on mechanics of materials.
This learning path systematically guides junior civil engineering students from foundational mechanics of materials through the design of steel tension members, compression members, beams, and connections following AISC specifications. It emphasizes the underlying principles, code provisions, and practical application to ensure a thorough understanding of steel member design.
This learning path covers the fundamental principles of concrete technology, from cement chemistry to mix design and testing. It is designed for junior civil engineering students seeking to understand and apply concrete technology in professional practice.