Description

The microcredential "M3-3-03 - Fuel cell for mobility application" focuses on the principles and applications of fuel cell technology in the context of mobility. Participants will learn about the design, operation, and maintenance of fuel cells specifically for use in transportation vehicles. This microcredential provides a comprehensive understanding of how fuel cells can be utilized as a sustainable and efficient power source in the field of mobility, preparing individuals for careers in this emerging industry.

Learn-and-Earn Microcredentials

Learn-and-earn microcredentials require completing a structured learning experience, such as a course, workshop, or learning path. Afterward, you must demonstrate mastery of the acquired skills through assessments or evaluations. This type ensures your knowledge is both acquired and validated, making it ideal for those seeking to enhance their expertise while earning a recognized credential. It combines education and skill validation, offering a clear pathway to professional growth.

Non-Formal Learning

This microcredential supports non-formal learning experiences. It recognizes skills gained through workshops, online courses, or workplace training, offering a flexible way to validate targeted learning outcomes. It's perfect for those seeking recognition for practical, hands-on learning outside traditional institutions.

Details

Microcredential

Non-Formal

Learn & Earn

English

5 years

27:30Learning Hours: 27.3ECTS: 1.5

Advanced

EQF - Europe: Level 7

Skills you will earn

Hydrogen Mobility Applications Overview

Identify and classify the main applications of hydrogen in mobility contexts, including transport sectors where hydrogen plays a key role.

Fuel Cell Technologies in Mobility

Identify and compare the main fuel cell technologies used in mobility applications, highlighting their advantages, limitations, and suitable use cases.

Hydrogen Vehicle Powertrain Architecture

Recognize and explain the structure of hydrogen-powered electric vehicles, from hydrogen storage systems to the electric motor, including key components and energy flow.

Hydrogen Vehicle Traction System Design (Simulation-Based)

Execute numerical simulations to design and evaluate the electric traction system of a hydrogen vehicle, assessing performance and system behaviour under operational conditions.

Our approach

We are driving a step change in qualitative microcredentialing and the issuance of microcertifications.

Certifications are awarded based on demonstrated skills, ensuring that competencies are validated through evidence.

With activity-based assessments and certified assessors, microcredentials can be earned significantly faster than through traditional methods, while maintaining high standards of quality and reliability.

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