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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
Other
Thinking & Problem Solving
Technical Skills
Business & Strategy
Data & Analytics
Total skills
11
Core skills
5
High demand
2
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?
“The core courses of the programme provide you with a solid understanding of the fundamental principles of physics, preparing you for a future driven by knowledge and technology.”
View sourceTech & data strength
Will you build strong technical skills (data, software, AI tools)?
“Computers allow for numerical computation of the fundamental laws of physics and advanced techniques, such as machine learning.”
View sourcePeople skills
Does it build communication, teamwork, and leadership?
“As a student of the programme, you will develop your critical evaluation and problem-solving abilities, advanced experimental techniques, collaboration and presentation skills, and engineering skills grounded in the fundamental principles of physics.”
View sourcePractical learning
Do you learn by doing (projects, labs, real-world work)?
“You can complete your thesis in collaboration with industry, a research institute, an organization, or within academia.”
View sourceInnovation & entrepreneurship
Does it support innovation, startups, or building new things?
Based on this program's field (Future Field), curriculum structure, and institution profile. How we score →
Global & ethical impact
Does it cover sustainability, ethics, and global perspective?
“astronomy, biological physics, computational physics, high-energy physics, materials science Together with Chalmers University of Technology, we offer a strong research environment with several active researchers as course-responsible teachers in the programme.”
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 5 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.
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Industry insights verified by Mojo
Big-picture context for . These sources show why the field is growing — not specific program details.
Industry insights coming soon for this field.
Citations from official sources
The core courses of the programme provide you with a solid understanding of the fundamental principles of physics, preparing you for a future driven by knowledge and technology.
View sourceComputers allow for numerical computation of the fundamental laws of physics and advanced techniques, such as machine learning.
View sourceAs a student of the programme, you will develop your critical evaluation and problem-solving abilities, advanced experimental techniques, collaboration and presentation skills, and engineering skills grounded in the fundamental principles of physics.
View sourceYou can complete your thesis in collaboration with industry, a research institute, an organization, or within academia.
View sourceastronomy, biological physics, computational physics, high-energy physics, materials science Together with Chalmers University of Technology, we offer a strong research environment with several active researchers as course-responsible teachers in the programme.
View source