Course on leaning and cornering techniques
About our
The Leaning and Cornering Techniques course provides intensive training in mastering motorcycle dynamics and vehicle control in corners. It focuses on learning essential techniques to optimize tracking, lean angle, and body use, key elements for safe and efficient riding. It includes the study of centripetal force, weight transfer, and throttle and brake management in cornering situations, both under normal and emergency conditions. The aim is to improve road safety and rider performance through supervised practice.
The course combines theory and practice, using simulations and track exercises to reinforce the concepts learned. It delves into the analysis of suspension and tires, crucial elements for grip and cornering control. Participants will develop skills to assess risks and make quick decisions on the road, contributing to safer and more responsible riding. It fosters riding awareness and knowledge of the motorcycle’s limits.
Target keywords (naturally occurring in the text): lean angle, cornering, motorcycle dynamics, vehicle control, trajectory, centripetal force, road safety, rider performance.
Course on leaning and cornering techniques
- Format: Online
- Duration: 4 months
- Hours: 300 H
- Language: ES / EN
- Credits: 60 ECTS
- Registration date: 04-07-2026
- Start date: 05-08-2026
- Available places: 9
299 $
Competencies and outcomes
What you will learn
1. Mastery of Advanced Techniques in Tilting and Turning for Precise Navigation
Who our [course/program] is aimed at:
Course on leaning and cornering techniques
9.9 Rotor Fundamentals: Geometry and Naval Design
9.9 Rotor Theory: Operating Principles and Aerodynamics
9.3 Rotor Modeling: Software and Simulation Tools
9.4 Rotor Performance: Thrust, Power, and Efficiency Analysis
9.5 Rotor Optimization: Selection and Design for Different Vessels
9.6 Rotor-Hulus Interaction: Effects and Design Considerations
9.7 Rotor Cavitation: Causes, Effects, and Mitigation
9.8 Rotor Testing and Validation: Wind Tunnels and Water Trials
9.9 Rotor Materials and Manufacturing: Selection and Advanced Processes
9.90 Case Studies: Rotor Design and Performance in Specific Vessels
Capstone-type projects
- Advanced Tilting/Curving: CFD simulation, trajectory optimization, drift analysis.
- Hulh Modeling: Resistance, stability, wave prediction.
- Precision Maneuvers: Turn optimization, performance analysis in adverse conditions.
- Strategic Navigation: Route planning, obstacle avoidance, risk analysis.
Admissions, fees, and scholarships
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