National University of Science and Technology MISiS
#721
QS World University Rankings 2026
Not listed
QS 2026 overall score
Ranking data
QS World University Rankings source#721
QS World University Rankings 2026
#711
QS World University Rankings 2025
Not listed
QS 2026 overall score
Indicator-level data
Each card keeps the QS 2026 score and rank separate. A missing value is not estimated.
Academic reputation
- QS 2026 score
- 7.2
- QS 2026 rank
- #701
Employer reputation
- QS 2026 score
- 15.5
- QS 2026 rank
- #701
Faculty-student ratio
- QS 2026 score
- 76.8
- QS 2026 rank
- #186
Citations per faculty
- QS 2026 score
- 21
- QS 2026 rank
- #698
International faculty ratio
- QS 2026 score
- 10.7
- QS 2026 rank
- #801
International student ratio
- QS 2026 score
- 67.4
- QS 2026 rank
- #294
International student diversity
- QS 2026 score
- 70.2
- QS 2026 rank
- #268
International research network
- QS 2026 score
- 43.7
- QS 2026 rank
- #801
Employment outcomes
- QS 2026 score
- 25.1
- QS 2026 rank
- #638
Sustainability
- QS 2026 score
- 37.5
- QS 2026 rank
- #801
About National University of Science and Technology MISiS
National University of Science and Technology MISiS centres materials, mining, and engineering
National University of Science and Technology MISiS presents colleges in technologies, new materials, economics and management, computer sciences, mining, biomedical engineering, physics and quantum engineering, and materials science, additive, and scalable technologies. This structure connects metallurgy, mining, engineering design, physics, computation, health applications, and industrial systems. The college and department should be chosen from the research question because a materials process, a mine model, a software system, and a biomedical device require different methods.
The College of New Materials describes work with metals, ceramics, semiconductors, dielectrics, composites, nanomaterials, energy materials, sensors, and bioimplants. The College of Mining adds exploration, mineral processing, geoinformation, infrastructure, and environmental improvement. Computer science, physics, and biomedical engineering provide adjacent routes for algorithms, quantum systems, imaging, tissue engineering, or medical devices.
MISiS research links digital manufacturing with mining, quantum work, and biomedicine
The College of Materials Science, Additive and Scalable Technologies describes additive manufacturing, digital materials science, lifecycle management, data analysis, engineering design, bioprinting, biomaterials, and virtual laboratories. Technology and mining units address alloys, powder metallurgy, functional coatings, process equipment, energy, geological modelling, and digital twins. These projects may use very different evidence, from crystallographic measurements and material samples to geological maps, production data, or simulation results.
The university's research and technology pages also identify materials science, quantum technologies, biotechnologies, computer science, mining, and engineering solutions as broad areas. A college label is a starting point rather than a project description. The researcher, laboratory, and programme pages should be read together so the proposed question has a clear unit, method, and expected result.
How to assess a National University of Science and Technology MISiS route
Name the system and measurement first. Materials research requires a composition, fabrication route, instrument, and property. Mining work needs a deposit, geological model, extraction process, or environmental measure. Computer science needs code, data, a model, or a software system. Quantum and physics research requires a state, device, signal, or experiment. Biomedical engineering should identify a tissue, biomaterial, device, or clinical use.
At MISiS, identify the college and department that own the question. Beside that route, state the method and teaching language, then name the expected result and one live researcher page. Treat an advanced engineering school or industrial partner as context until the responsible unit explains the project. Describe the work as experimental, computational, materials-based, industrial, geological, biomedical, or mathematical. Record the sample, instrument, mine data, codebase, test facility, or partner needed by the design before deciding whether its methods suit your preparation.
MISiS projects often sit between a material and the process that makes or uses it. A proposal should name the composition, production step, device, mine, geological model, or clinical use, then state the property or performance to be measured. This makes it easier to choose among materials, mining, computer, physics, biomedical, and technology colleges and to ask for the right laboratory or industrial setting. Keep the chosen property visible because it determines the useful instrument and the right research group. The same discipline also helps separate a laboratory question from a production or field question. Write down the test condition, comparison, or operating context that gives that property meaning for direct comparison.
Institution record
- Country
- Russian Federation
- Region
- Europe
- Status
- Public
- QS size code
- M
- Profile record updated
- July 24, 2026
This date shows when this profile was refreshed. It is not a source-verification date from QS or the university.
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