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course | Energy Transition

Learn Energy Transition concepts including renewable energy, sustainability, decarbonization, clean energy technologies, energy policy, and the future of global

EEC-575 | Energy Transition

Course Sector : Electrical Engineering

Duration
Date from
Date to Course Venue Course fees Book a course
5 Days14/09/202618/09/2026Abu Dhabi$4,250 Book now
5 Days07/12/202611/12/2026Amsterdam$4,950 Book now
5 Days05/04/202709/04/2027Dubai$4,250 Book now
5 Days05/07/202709/07/2027Dubai$4,250 Book now

Course Introduction

The Energy Transition course is designed to provide learners with a comprehensive understanding of the global shift from traditional fossil fuels toward cleaner, more sustainable energy systems. As governments and industries worldwide focus on reducing carbon emissions and achieving climate goals, energy transition has become one of the most important topics in the global energy sector.

This course explores the fundamentals of renewable energy, decarbonization strategies, sustainable development, and clean energy technologies. Participants will learn how countries and organizations are transforming energy production, distribution, and consumption to support a low-carbon future.

The program covers major renewable energy sources such as solar energy, wind energy, hydrogen energy, hydropower, and bioenergy, while also examining the role of natural gas and transitional fuels in supporting global energy demand during the transition period.

Learners will also explore energy policies, climate change regulations, carbon management, ESG principles, and energy economics. The course explains how technological innovation, digitalization, and energy efficiency are reshaping modern energy markets and infrastructure.

In addition, the course discusses the operational, financial, and environmental challenges associated with energy transition, including investment strategies, grid modernization, energy storage systems, and workforce transformation in the energy industry.

This course is ideal for energy professionals, engineers, sustainability specialists, policymakers, environmental consultants, and individuals interested in the future of global energy systems and sustainable business strategies.

By completing this course, participants will gain valuable insights into the evolving energy landscape, enabling them to understand clean energy trends, sustainability initiatives, and strategic opportunities in the rapidly changing global energy sector.


Course objective

  • Identify the sources of energy, their contributions, and issues
  • Learn how to build a path towards a sustainable future
  • Acquire the knowledge needed to implement the renewable energy projects
  • Learn the models of energy consumption
  • Adopt the improvement of energy production without the need for extensive investment
  • Use the energy production and consumption analytics for energy distribution planning

Course audience

  • Researchers and Practitioners in the field of Energy
  • Professionals in Applied Sciences
  • Technology Engineers, CTOs, and CIOs
  • Strategic Development Personnel 
  • Project Managers

Course Outline | DAY 01

Introduction to the Energy Industry

 

  • Oil, the energy of today-yes it still is
  • Natural gas is a clean energy pioneer
  • Coal-the energy and economics
  • Electricity-the energy for all
  • Energy market efficiency

Course Outline | Day 02

Energy Transition
 

  • Efficiency in the industry sector
  • Efficiency in the living environment sector
  • Efficiency in the transportation sector
  • Strategy of fuel transition
  • What does the future bring?

Course Outline | Day 03

Renewable Sources of Energy

 

  • Wastes in electric energy production
  • Solar energy
  • Wind energy
  • Geothermal energy
  • Biomass energy
  • Hydropower energy

Course Outline | Day 04

Innovation in the Energy Sector

 

  • Blockchain in the energy distribution sector
  • Energy storage facilities
  • Microgrids and artificial intelligence
  • Energy management
  • The reduction in carbon footprint

Course Outline | Day 05

Energy Efficient Buildings and Livable Space
 

  • Energy flow in buildings
  • Building energy performance
  • Digital twin of buildings and livable space
  • Digital twin of the energy system
  • Design of the energy-efficient city
Course Certificates
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BOOST’s Professional Attendance Certificate “BPAC”

BPAC is always given to the delegates after completing the training course,and depends on their attendance of the program at a rate of no less than 80%,besides their active participation and engagement during the program sessions.

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The energy transition is the global shift from traditional fossil fuels such as oil, coal, and natural gas toward cleaner and more sustainable energy sources like solar, wind, hydrogen, and renewable electricity.The main goals of energy transition are:Reducing carbon emissionsFighting climate changeImproving energy efficiencyIncreasing the use of renewable energyBuilding sustainable energy systems
The energy transition process involves changing how energy is produced, distributed, and consumed.Main stages include:1. Reducing dependence on fossil fuelsLowering the use of coal and high-emission energy sources.2. Expanding renewable energyIncreasing solar, wind, hydro, and clean energy investments.3. Improving energy efficiencyUsing smarter technologies and reducing energy waste.4. ElectrificationReplacing fuel-based systems with electric alternatives like EVs.5. Carbon reduction and sustainabilityImplementing net-zero strategies and environmental policies.
One major example is:Transition from coal power to solar and wind energyMany countries are shutting down coal power plants and replacing them with renewable energy farms to reduce pollution and carbon emissions.Other examples:Electric vehicles replacing gasoline carsHydrogen energy replacing traditional industrial fuelsSmart grids and battery storage systems
The “three laws of energy transition” are not official scientific laws, but commonly discussed principles in sustainability and energy policy discussions include:1. DecarbonizationReducing greenhouse gas emissions from energy systems.2. ElectrificationMoving energy use toward electricity-powered technologies.3. DecentralizationShifting from centralized energy systems to distributed renewable energy sources
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