
Commercial Pilot Course
Turn your passion for flight into a professional career with a comprehensive Commercial Pilot Course built to checkride standards. Master aerodynamics, instrument procedures, multi-engine operations, and crew resource management from the ground up. Every module is designed to prepare you for real-world commercial aviation, not just the written exam.
What you'll learn:
This course covers all knowledge areas required for a commercial pilot licence, beginning with regulations and airspace and progressing to advanced aerodynamics, aircraft systems, and turbine engine basics. You will study meteorology to plan routes around icing, wind shear, and convective weather confidently. Navigation training includes VOR, GPS, and performance‑based procedures for modern airspace. Instrument flight instruction moves from basic attitude instrument flying to full IFR departures, en‑route operations, and missed approaches. Multi‑engine aerodynamics and engine‑out techniques prepare you for demanding check‑ride manoeuvres. Crew resource management, threat and error management, and standard operating procedures complete the programme, ensuring you enter the cockpit with professional thinking and communication.
How you study in practice Commercial Pilot Course
How you practise Commercial Pilot Course
For businesses looking to train their team
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 • 37 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsAviation Foundations and Regulations
Aviation Foundations and Regulations
Lesson 1 • History and Structure of Aviation
Traces aviation milestones and the organisational structure of civil aviation authorities. Establishes context for understanding why regulations and standards exist.
Lesson 2 • Aircraft Airworthiness Standards
Explains type certificates, airworthiness directives, and maintenance record requirements. Prepares students to verify legal airworthiness before flight.
Lesson 3 • Regulatory Documents and Airspace Rules
Introduces the structure of aviation regulations and airspace classification. Students learn to locate and apply rules governing flight operations.
Lesson 4 • Pilot Certification Requirements
Covers certificate categories, ratings, and medical standards required for commercial pilot privileges. Connects regulatory requirements to career planning.
Chapter 2HideHide detailsSee detailsAerodynamics and Aircraft Performance
Aerodynamics and Aircraft Performance
Lesson 1 • Principles of Lift and Drag
Explains airfoil geometry, angle of attack, and the four forces of flight. Forms the aerodynamic basis for all subsequent performance analysis.
Lesson 2 • Advanced Aerodynamic Phenomena
Addresses high-speed aerodynamics, wake turbulence, and ground effect. Prepares students for complex flight environments encountered in commercial operations.
Lesson 3 • Stability and Control Surfaces
Covers longitudinal, lateral, and directional stability and the control surfaces that manage each axis. Students predict aircraft behaviour in normal and upset conditions.
Lesson 4 • Atmosphere and Its Effect on Performance
Examines standard atmosphere, density altitude, and temperature effects on engine and aerodynamic performance. Directly supports accurate use of performance charts.
Lesson 5 • Performance Charts and Weight and Balance
Teaches use of manufacturer performance charts and weight-and-balance calculations. Students produce legally compliant loading documents for commercial flights.
Chapter 3HideHide detailsSee detailsAircraft Systems and Powerplants
Aircraft Systems and Powerplants
Lesson 1 • Pressurisation and Environmental Systems
Covers cabin pressurisation, bleed air, and oxygen systems used in high-altitude operations. Connects system knowledge to physiological safety requirements.
Lesson 2 • Reciprocating Engine Operation
Covers four-stroke cycle, carburetion, fuel injection, and ignition systems. Provides the mechanical foundation for engine management and troubleshooting.
Lesson 3 • Avionics and Autopilot Systems
Introduces navigation radios, flight management computers, and autopilot modes. Students configure and monitor automated systems whilst maintaining manual proficiency.
Lesson 4 • Fuel, Electrical, and Hydraulic Systems
Details fuel system architecture, electrical bus design, and hydraulic actuator circuits. Students trace system logic to isolate failures during abnormal checklists.
Lesson 5 • Turbine Engine Fundamentals
Explains turboprop and turbojet thermodynamic cycles, compressor stages, and turbine sections. Prepares students for multi-engine and turbine-powered aircraft transitions.
Chapter 4HideHide detailsSee detailsMeteorology and Weather Decision-Making
Meteorology and Weather Decision-Making
Lesson 1 • Weather-Based Flight Planning
Integrates weather analysis into route selection, alternate planning, and fuel reserves. Bridges meteorological knowledge with operational decision-making.
Lesson 2 • Aviation Weather Products
Covers METARs, TAFs, PIREPs, SIGMETs, and graphical forecast products. Students extract operationally relevant data from each product type.
Lesson 3 • Icing, Turbulence, and Wind Shear
Identifies conditions that produce structural icing, clear-air turbulence, and low-level wind shear. Students apply avoidance strategies and aircraft de-icing procedures.
Lesson 4 • Atmospheric Processes and Weather Formation
Explains pressure systems, frontal boundaries, and convective processes that generate weather. Establishes the physical basis for interpreting all weather products.
Chapter 5HideHide detailsSee detailsNavigation and Flight Planning
Navigation and Flight Planning
Lesson 1 • Performance-Based Navigation Planning
Introduces PBN concepts, RNP procedures, and curved path approaches. Prepares students for advanced navigation operations in modern airspace.
Lesson 2 • GPS and Area Navigation
Explains GPS signal architecture, RAIM, and RNAV route construction. Students programme and verify GPS flight plans for enroute and approach operations.
Lesson 3 • Chart Reading and Dead Reckoning
Teaches sectional and IFR en route chart symbology, magnetic variation, and dead reckoning calculations. Provides the manual navigation baseline for all electronic methods.
Lesson 4 • Radio Navigation Systems
Covers VOR, DME, NDB, and ILS signal characteristics and cockpit interpretation. Students track airways and execute instrument approaches using ground-based navaids.
Lesson 5 • IFR Flight Plan Filing and Execution
Covers IFR flight plan format, preferred routes, and ATC clearance readback. Students complete end-to-end IFR planning from departure to destination.
Chapter 6HideHide detailsSee detailsInstrument Flight Procedures
Instrument Flight Procedures
Lesson 1 • Instrument Approach Procedures
Teaches precision and non-precision approach categories, briefing, and execution. Students fly ILS, RNAV, and VOR approaches to published minimums.
Lesson 2 • Attitude Instrument Flying Fundamentals
Establishes the control-and-performance method for maintaining attitude using primary flight instruments. Forms the core scan technique used throughout all IFR operations.
Lesson 3 • Missed Approach and Alternate Planning
Covers missed approach point identification, procedure execution, and alternate airport selection. Ensures students can safely recover from any approach that cannot be completed.
Lesson 4 • Unusual Attitudes and Spatial Disorientation
Addresses vestibular illusions, somatogravic effects, and unusual attitude recovery. Prepares students to recognise and correct disorientation before loss of control.
Lesson 5 • Departure and Enroute IFR Procedures
Covers standard instrument departures, obstacle departure procedures, and en route altitude rules. Students transition from takeoff to en route flight within ATC structure.
Chapter 7HideHide detailsSee detailsMulti-Engine Operations
Multi-Engine Operations
Lesson 1 • Engine Failure Recognition and Response
Covers engine failure cues, immediate action memory items, and securing procedures. Students develop rapid, accurate responses to engine failures at all flight phases.
Lesson 2 • Multi-Engine Instrument Approaches
Applies instrument approach procedures to single-engine scenarios in multi-engine aircraft. Students execute approaches and go-arounds with one engine inoperative.
Lesson 3 • Multi-Engine Aerodynamics
Explains asymmetric thrust, critical engine concepts, and VMC factors. Provides the aerodynamic foundation for all engine-out emergency procedures.
Lesson 4 • Single-Engine Performance and Planning
Teaches single-engine climb gradients, service ceiling, and obstacle clearance planning. Students calculate whether continued flight or landing is the safer option.
Chapter 8HideHide detailsSee detailsCommercial Flight Operations and CRM
Commercial Flight Operations and CRM
Lesson 1 • Crew Resource Management Principles
Introduces CRM history, communication models, and authority gradient management. Establishes the interpersonal framework for safe multi-crew operations.
Lesson 2 • Fatigue, Fitness, and Human Factors
Addresses duty time regulations, sleep physiology, and fitness-for-duty self-assessment. Prepares students to manage personal performance across commercial schedules.
Lesson 3 • Threat and Error Management
Covers the TEM model, threat identification, error trapping, and undesired aircraft states. Students apply TEM analysis to real-world commercial flight scenarios.
Lesson 4 • Standard Operating Procedures
Explains the purpose, structure, and discipline of SOPs in commercial aviation. Students demonstrate consistent SOP compliance during simulated line operations.
Lesson 5 • Commercial Flight Operations Standards
Covers dispatch, operational control, minimum equipment lists, and flight release. Students understand the shared responsibility model between pilots and operations.
Your valid completion certificate
This course is for you:
Student pilot: ready to advance beyond private licence towards commercial privileges.
Career changer: seeking a structured entry point into professional aviation employment.
Private pilot: wanting the systems knowledge required for commercial-level operations.
Military aviator: transitioning to civilian licences and airline hiring pipelines.
Flight school enrollee: needing a rigorous ground study companion for practical training.
Aviation enthusiast: committed to turning a lifelong passion into a licensed profession.
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