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Check if your qualifications meet this program's admission requirements.
11 skills mapped from curriculum analysis
These skills are derived from curriculum analysis and industry alignment. Primary skills are core to the program; others are developed through coursework and projects.
Core skills
Additional skills
Technical Skills
Domain Knowledge
Business & Strategy
Thinking & Problem Solving
Total skills
11
Core skills
4
High demand
9
This is based on the Climate, Energy & Carbon Economics Future Field and its subfields (not program‑specific promises). Use the official program page for curriculum details.
Why this field matters
Climate tech, renewable energy, carbon economics, and sustainability
Career outcomes snapshot
A quick, visual overview of common outcomes in this field (roles + paths + subfields). It’s field-level context — not a promise for this specific program.
Roles
6
Paths
6
Subfields
2
Top roles
Typical paths
Subfields
Looking for a Master's in Climate, Energy & Carbon Economics? Compare intakes above and verify curriculum details on the official programme page.
A–F framework evaluation • Each score is backed by evidence
6-dimension future-readiness evaluation
Future relevance
Is this program connected to fast-growing careers?
“Energy Supply through Clean Conversion Technologies The profile Energy Supply through Clean Conversion Technologies focuses on sustainable energy conversion processes and systems for generating and distributing electrical power, district heating and cooling, and water treatment to drinking water quality.”
View sourceTech & data strength
Will you build strong technical skills (data, software, AI tools)?
“Other software includes Aspen Plus for process simulation, and several Python-based packages: Pandapower for electric grid modelling and analysis, Pyomo and pulp for system optimisation, DHNX for district heating network analysis, and machine-learning libraries for data analysis in energy technology.”
View sourcePeople skills
Does it build communication, teamwork, and leadership?
“Courses and teaching methods We offer courses by faculty staff who are also engaged in research and collaboration with the industry.”
View sourcePractical learning
Do you learn by doing (projects, labs, real-world work)?
“Teaching in the programme is student-centred and hands-on, with a strong focus on challenge-driven and project-based learning.”
View sourceInnovation & entrepreneurship
Does it support innovation, startups, or building new things?
“Graduates from the programme can be among else be found in entrepreneurial companies like Vattenfall and Phoenix Biopower, in manufacturing companies like ABB and Scania, in consulting companies like AFRY, SWECO, WSP, McKinsey & Company and Alight.”
View sourceGlobal & ethical impact
Does it cover sustainability, ethics, and global perspective?
“Energy System Analysis The profile Energy System Analysis focuses on the systems perspective of the sustainable energy transition, where energy technology innovation, planning, and policy are linked to sustainable development.”
View sourceHow we calculate these scores
Our A–F framework evaluates programs across 6 dimensions of future-readiness. Scores combine: field alignment (how the program's field connects to growing industries), curriculum signals (keywords, course structure, learning outcomes), and institution profile (research focus, industry partnerships). This program has 6 verified citations from official sources.
Learn more about our methodologyMojo can build a personalized shortlist based on your profile. Or talk to a human advisor.
Promise: no sales pressure — just clarity.
Industry insights verified by Mojo
Big-picture context for Climate, Energy & Carbon Economics. These sources show why the field is growing — not specific program details.
Global renewable capacity is set to double by 2030
International Energy Agency • 2025-01-01
The IEA expects global renewable power capacity to double by 2030, adding 4,600 GW — roughly the current power capacity of China, the EU and Japan combined — with solar PV almost 80% of the growth.
Read sourceRenewable-energy jobs hit a record 16.2 million
IRENA / ILO • 2024-10-01
IRENA and the ILO report renewable-energy employment reached a record 16.2 million jobs in 2023, up from 13.7 million a year earlier — an 18% jump.
Read sourceSolar power is the world’s largest renewable-energy employer
IRENA / ILO • 2024-10-01
Solar PV accounted for 44% of the global renewable-energy workforce in 2023 — about 7.1 million jobs — making it the single largest renewable-energy employer.
Read sourceEnergy jobs growing faster than the overall economy
International Energy Agency • 2024-01-01
Strong investment in energy infrastructure drove a 2.2% rise in energy jobs last year, nearly double the rate of employment growth for the wider global economy.
Read sourceCitations from official sources
Energy Supply through Clean Conversion Technologies The profile Energy Supply through Clean Conversion Technologies focuses on sustainable energy conversion processes and systems for generating and distributing electrical power, district heating and cooling, and water treatment to drinking water quality.
View sourceOther software includes Aspen Plus for process simulation, and several Python-based packages: Pandapower for electric grid modelling and analysis, Pyomo and pulp for system optimisation, DHNX for district heating network analysis, and machine-learning libraries for data analysis in energy technology.
View sourceCourses and teaching methods We offer courses by faculty staff who are also engaged in research and collaboration with the industry.
View sourceTeaching in the programme is student-centred and hands-on, with a strong focus on challenge-driven and project-based learning.
View sourceGraduates from the programme can be among else be found in entrepreneurial companies like Vattenfall and Phoenix Biopower, in manufacturing companies like ABB and Scania, in consulting companies like AFRY, SWECO, WSP, McKinsey & Company and Alight.
View sourceEnergy System Analysis The profile Energy System Analysis focuses on the systems perspective of the sustainable energy transition, where energy technology innovation, planning, and policy are linked to sustainable development.
View source