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Energy Demand Projections with MAED (Model for Analysis of Energy Demand)
This course introduces long term energy demand simulation and power demand profile generation using the International Atomic Energy Agency's Model for Analysis of Energy Demand (MAED). Participants will learn the basics of setting upa model, calibrating it, and running scenarios.
Course
20 hrs
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Input-Output analysis and modelling with MARIO
The main goal of the course is to introduce you to the fundamentals of quantitative impact assessment methods and models. These quantitative models are specifically designed to assess the prospective environmental and economic impacts resulting from the application of technological or policy interventions at meso and macro-scale, comprehensively including supply-chain effects in a Life Cycle perspective.
Course
40 hrs
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Energy and Flexibility Modelling: OSeMOSYS & FlexTool (MAC)
(MAC version) Participants will learn to use energy modelling tools to understand the investments needed to meet growing energy demands alongside environmental and energy security constraints, while assessing system flexibility to account for high renewables penetration.
Course
32 hrs
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Energy and Flexibility Modelling: OSeMOSYS & FlexTool (Windows)
(WINDOWS version) Participants will learn to use energy modelling tools to understand the investments needed to meet growing energy demands alongside environmental and energy security constraints, while assessing system flexibility to account for high renewables penetration.
Course
32 hrs
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Geospatial clean cooking access modelling using OnStove
In this course you will be introduced to OnStove, an open-source spatial clean cookingtool identifying the best cooking solutions across any given area based on their costsand benefits. The track will take you from start to finish, from creating your own spatialrepository to modifying your spatial data, calculating the net-benefits of differentcooking solutions and lastly visualizing and presenting your results.
Course
32 hrs
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Off-Grid Energy Systems Modelling with MicroGridsPy
Explore the computational aspects of energy system modelling, delve into the technological components of third-generation minigrids, and discover MicroGridsPy, an open-source Python framework for optimal sizing of minigrids.
Course
40 hrs
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Financial Modelling for Energy Transitions MINFin, FinTrack & FinCoRE
This course provides participants with the skills to assess the financial viability of energy transition investments, using financial modelling tools. It features MINFin, a model for identifying climate finance gaps, as well as FinTrack and FinCoRE, tools for tracking funding sources and estimating renewable energy costs.
Course
15 hrs
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Energy System Modelling using the Modelling User Interface for OSeMOSYS (MUIO)
This course provides a comprehensive introduction to energy system modelling using OSeMOSYS, a linear programming optimization tool for long- term energy planning and policy analysis.
Course
20 hrs
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Projeções de Demanda de Energia com o MAED (Modelo para Análise da Demanda de Energia)
Este curso ensinará aos participantes como utilizar a ferramenta de modelagem da Agência Internacional de Energia Atômica (AIEA) chamada Energy Balance Studio (EBS). Os participantes aprenderão a teoria por trás dos balanços energéticos e como usar a ferramenta EBS para elaborar balanços de energia.
Course
20 hrs
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Modelagem de Sistemas Energéticos usando a Interface de Usuário de Modelagem para OSeMOSYS (MUIO)
Este curso oferece uma introdução abrangente à modelagem de sistemas energéticos usando o OSeMOSYS, uma ferramenta de otimização por programação linear para planejamento energético de longo prazo e análise de políticas.
Course
32 hrs
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Esports A–Z: An Educator’s Guide to the Esports Industry
Discover how esports can boost engagement, develop digital and transferable skills, support wellbeing and inclusion, and help you design purposeful, sustainable esports programmes for your school or educational setting.
Course
24 hrs
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System Mapping for Quantitative Modelling
This course introduces systems thinking and system mapping for policy challenges in energy systems of LMICs, equipping learners to analyse feedback, power, and leverage points in complex socio-technical systems. Designed for policymakers, researchers, and practitioners, this course builds conceptual and practical skills in systems thinking and participatory system mapping. It introduces causal loop diagrams, system archetypes, and the iceberg model, applying them to LMIC-relevant challenges such as energy access, finance, and informality. Through case studies and hands-on exercises, participants learn to identify feedback loops, stakeholder dynamics, and leverage points, and to translate qualitative insights into modelling, policy, and financing strategies.
Course
10 hrs
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Financial Modelling for Energy Transitions MINFin, FinTrack & FinCoRE
This course provides participants with the skills to assess the financial viability of energy transition investments, using financial modelling tools. It features MINFin, a model for identifying climate finance gaps, as well as FinTrack and FinCoRE, tools for tracking funding sources and estimating renewable energy costs.
Course
15 hrs
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Off-Grid Energy Systems Modelling with MicroGridsPy
Explore the computational aspects of energy system modelling, delve into the technological components of third-generation minigrids, and discover MicroGridsPy, an open-source Python framework for optimal sizing of minigrids.
Course
40 hrs
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Geospatial Clean Cooking access modelling using OnStove
In this course you will be introduced to OnStove, an open-source spatial clean cookingtool identifying the best cooking solutions across any given area based on their costsand benefits. The track will take you from start to finish, from creating your own spatialrepository to modifying your spatial data, calculating the net-benefits of differentcooking solutions and lastly visualizing and presenting your results.
Course
32 hrs
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Energy and Flexibility Modelling: OSeMOSYS & FlexTool (Windows)
(WINDOWS version) Participants will learn to use energy modelling tools to understand the investments needed to meet growing energy demands alongside environmental and energy security constraints, while assessing system flexibility to account for high renewables penetration.
Course
32 hrs
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Energy and Flexibility Modelling: OSeMOSYS & FlexTool (for macOS users)
(MAC version) Participants will learn to use energy modelling tools to understand the investments needed to meet growing energy demands alongside environmental and energy security constraints, while assessing system flexibility to account for high renewables penetration.
Course
32 hrs