
Continuing Education in Civil Engineering
Advance your civil engineering career with a comprehensive continuing education program covering structural design, geotechnical analysis, transportation planning, and project management. Built for working engineers, this course bridges theory and real-world practice across every major discipline. Earn the technical depth and professional confidence your projects demand.
What you will learn:
This course covers the full spectrum of civil engineering practice, from soil classification and foundation design to traffic flow analysis and hydraulic system sizing. You will study construction materials, structural load analysis, and code-compliant design methods used on active infrastructure projects. Project management modules address scheduling, cost estimating, contract administration, and construction safety. Supplementary content introduces BIM workflows, GIS applications, environmental impact assessment, and emerging technologies such as drone surveying and AI-assisted design. By the end, you will have the integrated technical and professional skills to lead complex, multi-discipline civil engineering projects.
How you study in practice Continuing Education in Civil Engineering
How you practice Continuing Education in Civil Engineering
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Civil Engineering Practice
Foundations of Civil Engineering Practice
Lesson 1 • Units, Measurements, and Technical Documentation
Reviews SI and customary unit systems and technical drawing conventions. Ensures consistent communication across all project deliverables.
Lesson 2 • Regulatory and Standards Overview
Introduces design standards, building codes, and permitting processes. Provides the compliance baseline applied in all subsequent technical chapters.
Lesson 3 • Professional Ethics and Conduct
Covers ethical codes, conflict of interest, and whistleblowing duties. Grounds engineers in decision-making frameworks required throughout the course.
Lesson 4 • Role and Scope of Civil Engineering
Defines civil engineering disciplines and their interdependencies. Connects professional scope to infrastructure planning and public safety obligations.
Chapter 2HideHide detailsSee detailsConstruction Materials and Methods
Construction Materials and Methods
Lesson 1 • Construction Methods and Sequencing
Introduces earthwork, formwork, and erection sequencing for civil projects. Links construction method selection to schedule, cost, and safety outcomes.
Lesson 2 • Quality Control and Materials Testing
Covers field and laboratory testing protocols for construction materials. Ensures materials meet specification requirements before and during construction.
Lesson 3 • Steel and Structural Metal Properties
Reviews steel grades, weldability, and connection types for structural use. Connects material properties to fabrication and erection considerations.
Lesson 4 • Concrete Mix Design and Properties
Covers water-cement ratio, admixtures, and strength development in concrete. Provides mix design skills applied in structural and pavement construction.
Lesson 5 • Timber and Masonry Construction
Covers wood species grading, moisture effects, and masonry unit properties. Prepares engineers to specify and detail timber and masonry structural elements.
Chapter 3HideHide detailsSee detailsStructural Analysis and Design Principles
Structural Analysis and Design Principles
Lesson 1 • Material Behavior and Structural Limits
Examines stress, strain, and failure modes in steel, concrete, and timber. Establishes allowable stress and limit-state design concepts used in later chapters.
Lesson 2 • Static Equilibrium and Force Systems
Covers free-body diagrams, resultant forces, and equilibrium conditions. Forms the analytical foundation for all structural design sections that follow.
Lesson 3 • Structural System Selection
Compares framing systems, lateral force-resisting systems, and foundation types. Guides engineers in matching structural systems to project constraints.
Lesson 4 • Load Types and Load Combinations
Identifies dead, live, wind, seismic, and environmental loads. Teaches load combination rules required for code-compliant structural design.
Lesson 5 • Beam and Frame Analysis
Applies shear and moment diagrams to beams and frames under various loads. Connects internal force analysis to material selection and member sizing.
Chapter 4HideHide detailsSee detailsGeotechnical Engineering Fundamentals
Geotechnical Engineering Fundamentals
Lesson 1 • Slope Stability and Earth Retaining Structures
Evaluates slope failure mechanisms and retaining wall design methods. Prepares engineers to address earthwork and excavation safety challenges.
Lesson 2 • Shallow and Deep Foundation Design
Applies bearing capacity theory to spread footings and pile systems. Integrates soil data with structural loads to produce safe foundation designs.
Lesson 3 • Soil Strength and Compressibility
Analyzes shear strength parameters and consolidation behavior. Provides data inputs for slope stability and settlement calculations.
Lesson 4 • Soil Classification and Properties
Covers grain size, plasticity, and unified soil classification. Provides the soil characterization vocabulary used throughout geotechnical analysis.
Lesson 5 • Site Investigation and Subsurface Exploration
Teaches boring, sampling, and in-situ testing methods. Connects field data collection to reliable subsurface profile development.
Chapter 5HideHide detailsSee detailsTransportation Engineering and Planning
Transportation Engineering and Planning
Lesson 1 • Transportation Planning and Demand Modeling
Introduces four-step travel demand modeling and multimodal planning. Links land use, demographics, and policy to long-range infrastructure decisions.
Lesson 2 • Geometric Design of Roadways
Covers horizontal alignment, vertical profiles, and cross-section elements. Connects design speed and sight distance to safe roadway geometry.
Lesson 3 • Traffic Flow Theory and Analysis
Introduces flow, speed, density relationships, and level-of-service concepts. Establishes traffic analysis tools applied in roadway and intersection design.
Lesson 4 • Intersection and Signal Design
Applies capacity analysis and signal timing to at-grade intersections. Reduces conflict points and improves throughput for mixed traffic streams.
Lesson 5 • Pavement Design and Materials
Covers flexible and rigid pavement design methods and material selection. Ensures pavements meet structural and durability requirements under traffic loading.
Chapter 6HideHide detailsSee detailsWater Resources and Hydraulic Engineering
Water Resources and Hydraulic Engineering
Lesson 1 • Wastewater Collection and Treatment Overview
Introduces gravity sewer design, lift stations, and treatment process selection. Connects collection system hydraulics to environmental discharge requirements.
Lesson 2 • Stormwater Management and Drainage Design
Covers rational method, detention basins, and low-impact development practices. Reduces peak runoff and improves water quality in developed watersheds.
Lesson 3 • Water Distribution System Design
Applies pipe network analysis and pump selection to potable water systems. Ensures adequate pressure and flow for domestic and fire protection demands.
Lesson 4 • Open-Channel Flow Hydraulics
Applies Manning's equation and energy principles to channel and culvert design. Connects flow regime analysis to safe conveyance capacity.
Lesson 5 • Hydrological Cycle and Rainfall Analysis
Covers precipitation, evapotranspiration, and runoff generation processes. Provides the hydrological inputs required for drainage and flood design.
Chapter 7HideHide detailsSee detailsProject Management for Civil Engineers
Project Management for Civil Engineers
Lesson 1 • Project Scope and Delivery Methods
Defines scope development, work breakdown structures, and project delivery options. Aligns project objectives with appropriate contracting and delivery strategies.
Lesson 2 • Cost Estimating and Budget Control
Covers quantity takeoff, unit cost estimating, and earned value analysis. Provides tools to track and control project costs throughout construction.
Lesson 3 • Scheduling and Critical Path Analysis
Applies CPM and Gantt charts to civil construction schedules. Identifies critical activities and float to manage project duration effectively.
Lesson 4 • Construction Safety Management
Covers hazard identification, safety planning, and incident investigation. Integrates safety management into project planning and site supervision.
Lesson 5 • Contract Administration and Claims
Reviews contract types, change order management, and dispute resolution. Equips engineers to administer contracts and resolve claims professionally.
Chapter 8HideHide detailsSee detailsAdvanced Design Integration and Practice
Advanced Design Integration and Practice
Lesson 1 • Risk Assessment and Mitigation in Design
Identifies technical and project risks and develops mitigation strategies. Embeds risk thinking into design decisions and project delivery planning.
Lesson 2 • Capstone Project Development
Guides engineers through a complete multi-discipline infrastructure design project. Synthesizes all core competencies into a professional-quality deliverable.
Lesson 3 • Sustainable Infrastructure Design
Applies green rating systems, low-carbon materials, and resilience principles to design. Aligns infrastructure performance with environmental and community sustainability goals.
Lesson 4 • Multi-Discipline Design Coordination
Addresses interface management between structural, civil, and MEP disciplines. Reduces design conflicts through systematic coordination and clash detection.
Lesson 5 • Value Engineering and Design Optimization
Applies value engineering methodology to reduce cost without sacrificing function. Connects optimization techniques to constructability and lifecycle performance.
Your valid completion certificate
This course is for you:
Licensed civil engineer seeking to close discipline-specific knowledge gaps.
Recent engineering graduate transitioning from academic study to field practice.
Construction project manager wanting stronger technical grounding in civil systems.
Military engineer moving into civilian infrastructure roles after service.
Urban planner aiming to collaborate more effectively with civil design teams.
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