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Civil Engineer Course
More than 2 million students worldwide

Civil Engineer Course

4.5

Master the full spectrum of civil engineering — from structural mechanics and geotechnical analysis to transport design and construction management. This comprehensive course gives you the technical depth and practical tools to tackle real-world infrastructure challenges. Build the expertise employers and clients demand from a competent, well-rounded civil engineer.

Dedika for businesses

What you will learn:

This course covers every major discipline in civil engineering, starting with engineering mechanics and mechanics of materials, then advancing into structural analysis, reinforced concrete and steel design, and geotechnical engineering. You will study hydraulics, hydrology, and transport engineering, gaining the skills to design roads, drainage systems, and water infrastructure. Construction management topics include scheduling, cost estimating, contracts, and quality control. Supplementary chapters introduce BIM, GIS, environmental engineering, risk management, and emerging technologies such as AI and digital twins. By the end, you will have a complete, job-ready foundation in civil engineering practice.

How you study in practice Civil Engineer Course

How you practise Civil Engineer Course

For businesses looking to train their team

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Course content

8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Civil Engineering

  • Lesson 1 • Units, Measurements, and Engineering Maths

    Reviews SI and imperial unit systems, dimensional analysis, and applied mathematics. Builds the quantitative foundation required for all technical chapters.

  • Lesson 2 • Engineering Drawing and CAD Basics

    Introduces orthographic projection, plan reading, and basic CAD tools. Enables students to interpret and produce standard engineering drawings.

  • Lesson 3 • Professional Roles and Ethics

    Defines the civil engineer's responsibilities to clients, the public, and the environment. Connects ethical frameworks to everyday engineering decisions.

  • Lesson 4 • Introduction to Engineering Materials

    Surveys concrete, steel, timber, and soil as structural materials. Establishes material awareness needed before studying mechanics and design.

  • Lesson 5 • Scope and History of Civil Engineering

    Traces civil engineering from ancient infrastructure to modern practice. Provides context for understanding how the profession evolved and why its principles matter.

Chapter 2See details

Engineering Mechanics and Statics

  • Lesson 1 • Force Systems and Vectors

    Covers vector representation, resultant forces, and free-body diagrams. Forms the analytical language used throughout structural analysis.

  • Lesson 2 • Equilibrium of Rigid Bodies

    Applies Newton's laws to determine conditions for static equilibrium. Directly supports beam and truss analysis in later chapters.

  • Lesson 3 • Trusses and Frames

    Analyses pin-jointed trusses using method of joints and method of sections. Prepares students for structural member design.

  • Lesson 4 • Friction and Applications

    Examines dry friction, wedges, and belt friction relevant to retaining structures and mechanical systems.

  • Lesson 5 • Centroids and Moments of Inertia

    Calculates geometric properties of sections critical for beam bending and column buckling analysis.

Chapter 3See details

Mechanics of Materials

  • Lesson 1 • Beam Deflection and Column Buckling

    Computes beam deflections using integration and energy methods, and applies Euler's buckling formula to columns.

  • Lesson 2 • Bending of Beams

    Develops flexure formula and shear flow for beams under transverse loading. Directly supports structural beam sizing and selection.

  • Lesson 3 • Axial Load and Deformation

    Calculates elongation, thermal effects, and statically indeterminate axial members. Connects material properties to real structural behaviour.

  • Lesson 4 • Stress and Strain Fundamentals

    Defines normal and shear stress, strain, and Hooke's Law. Establishes the stress-strain relationship used in all subsequent design calculations.

  • Lesson 5 • Torsion in Circular Shafts

    Derives shear stress and angle of twist for solid and hollow circular members. Applies to mechanical and structural shaft design.

Chapter 4See details

Structural Analysis and Design

  • Lesson 1 • Foundation Types and Selection

    Compares shallow and deep foundation systems and links structural loads to geotechnical capacity requirements.

  • Lesson 2 • Reinforced Concrete Design Principles

    Covers flexural, shear, and compression design of reinforced concrete members using strength design methods.

  • Lesson 3 • Structural Loads and Load Combinations

    Identifies dead, live, wind, seismic, and environmental loads and their combinations. Establishes the loading basis for all structural design work.

  • Lesson 4 • Determinate and Indeterminate Structures

    Distinguishes statically determinate from indeterminate structures and applies appropriate analysis methods.

  • Lesson 5 • Steel Structure Design Principles

    Applies limit-state design to steel beams, columns, and connections using standard section properties.

Chapter 5See details

Geotechnical Engineering Fundamentals

  • Lesson 1 • Effective Stress and Consolidation

    Applies effective stress principle and Terzaghi's consolidation theory to predict settlement over time.

  • Lesson 2 • Soil Compaction and Permeability

    Analyses compaction curves, field control methods, and Darcy's Law for water flow through soil.

  • Lesson 3 • Shear Strength of Soils

    Determines shear strength parameters using laboratory and field tests for slope and foundation design.

  • Lesson 4 • Soil Composition and Classification

    Examines soil phase relationships, grain size distribution, and plasticity to classify soils systematically.

  • Lesson 5 • Lateral Earth Pressure and Retaining Walls

    Calculates active and passive earth pressures and applies them to gravity and cantilever retaining wall design.

Chapter 6See details

Hydraulics and Hydrology

  • Lesson 1 • Fluid Properties and Hydrostatics

    Reviews fluid properties, pressure distribution, and hydrostatic forces on submerged surfaces. Provides the physical basis for hydraulic design.

  • Lesson 2 • Pipe Flow and Pumping Systems

    Applies Bernoulli's equation, friction losses, and pump curves to pressurised pipe network design.

  • Lesson 3 • Open-Channel Flow

    Analyses uniform and gradually varied flow in channels using Manning's equation and energy principles.

  • Lesson 4 • Stormwater and Drainage Design

    Designs storm sewers, culverts, and detention basins to manage urban and rural runoff safely.

  • Lesson 5 • Hydrological Analysis

    Quantifies precipitation, infiltration, and runoff using rational method and unit hydrograph techniques.

Chapter 7See details

Transport Engineering

  • Lesson 1 • Pavement Materials and Design

    Compares flexible and rigid pavement systems and applies structural design methods for traffic loading.

  • Lesson 2 • Transport Planning Basics

    Introduces travel demand modelling, mode choice, and network evaluation for planning-level decisions.

  • Lesson 3 • Geometric Design of Highways

    Applies sight distance, horizontal alignment, and vertical profile standards to highway geometric design.

  • Lesson 4 • Intersection and Signal Design

    Designs at-grade intersections and signal timing plans to optimise safety and traffic flow.

  • Lesson 5 • Traffic Flow and Analysis

    Quantifies traffic volume, speed, density, and capacity using fundamental flow theory and field data.

Chapter 8See details

Construction Management and Project Delivery

  • Lesson 1 • Project Planning and Scheduling

    Develops work breakdown structures, CPM networks, and Gantt charts to plan and control project timelines.

  • Lesson 2 • Cost Estimating and Budget Control

    Prepares quantity take-offs, unit-price estimates, and earned value analyses to control project costs.

  • Lesson 3 • Quality Assurance and Control

    Implements inspection plans, testing protocols, and nonconformance management to ensure construction quality.

  • Lesson 4 • Health, Safety, and Site Management

    Applies hazard identification, safety planning, and site logistics to maintain a safe construction environment.

  • Lesson 5 • Construction Contracts and Procurement

    Compares contract types, procurement methods, and risk allocation strategies used in civil construction.

Certification

Your valid completion certificate

This course is for you:

  • Recent high school graduates: eager to pursue a civil engineering degree or career.

  • Construction site supervisors: wanting to deepen their technical engineering knowledge base.

  • Architecture graduates: looking to expand into structural and infrastructure design work.

  • Career changers from trades: ready to transition into professional engineering roles formally.

  • Junior civil engineers: seeking to fill gaps across multiple sub-disciplines simultaneously.

  • Urban planning professionals: aiming to strengthen their technical foundation in infrastructure systems.

What our students say

Your lessons are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to change platforms... I'm grateful for everything you do, I've already recommended you to other people...
Giulio Carlo
Giulio CarloDigital Marketing Student
I like how the lessons are straight to the point and how I can change chapters and skip content I don't need.
Mariana Ferres
Mariana FerresPhotography Student
I like the content and the way videos are presented and transcribed, which speeds up the process!
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Luciana AlvarengaNail Design Student
The platform is fast and simple to use. The diversity of content and complementary videos really help with learning.
André Felipe
André FelipePrompt Engineering Student

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