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Institution profile

Novosibirsk State University

Russian FederationEurope

#461

QS World University Rankings 2026

33.9

QS 2026 overall score

QS World University Rankings data

Ranking data

QS World University Rankings source

#461

QS World University Rankings 2026

#442

QS World University Rankings 2025

33.9

QS 2026 overall score

QS 2026 indicators

Indicator-level data

Each card keeps the QS 2026 score and rank separate. A missing value is not estimated.

Academic reputation

QS 2026 score
28.8
QS 2026 rank
#432

Employer reputation

QS 2026 score
31.1
QS 2026 rank
#460

Faculty-student ratio

QS 2026 score
93.6
QS 2026 rank
#87

Citations per faculty

QS 2026 score
13
QS 2026 rank
#801

International faculty ratio

QS 2026 score
9.1
QS 2026 rank
#801

International student ratio

QS 2026 score
70.6
QS 2026 rank
#272

International student diversity

QS 2026 score
69.5
QS 2026 rank
#274

International research network

QS 2026 score
55.7
QS 2026 rank
#758

Employment outcomes

QS 2026 score
13.3
QS 2026 rank
#801

Sustainability

QS 2026 score
43.8
QS 2026 rank
#801
University profile

About Novosibirsk State University

NSU divides research from physics to humanities before it narrows into individual laboratories

Novosibirsk State University's research pages begin with a wide set of divisions: physics, materials and technologies, chemistry, biology and medicine, space sciences, exact sciences, earth sciences, information technologies, social sciences, and humanities. The divisions page then moves from those broad labels to named laboratories, centres, and research subjects. In physics, for example, the public list includes work on ionising radiation, muon experiments, high-energy colliders, particle interactions, photonics, quantum optical technologies, atomic clocks, and biological-system optics. That level of detail matters because it prevents a broad phrase such as physics from being mistaken for one uniform research environment.

The same pattern appears in other divisions. Materials and technologies includes functional-materials methods, micro and nanostructuring, composite materials, and structural diagnostics. Biology and medicine lists protein engineering, computational genomics, genomic technologies, paleogenomics, epigenetics, and biomedical technologies. Earth sciences includes geodynamics, paleomagnetism, mantle geochemistry, seismic-data analysis, and hydrocarbon-production optimisation. These public labels provide a detailed map, but each one still needs to be read on its own terms. A laboratory title can identify a field or method; it cannot automatically answer every question a reader may have about present work.

Seven strategic units make quantum technologies, Arctic study, and synthetic biology separate routes

NSU describes its strategic academic units as research and academic consortia formed from research teams and linked to university education. The seven listed units are The New Physics, Nonlinear Photonics and Quantum Technologies, Low-dimensional Hybrid Materials, Geological and Geophysical Research in the Arctic and Global Priorities, Synthetic Biology, Neuroscience in Translational Medicine, and IT and Humanitarian Technologies of Knowledge Presentation in Educational Systems. The list makes a useful distinction between a research division and a strategic consortium. A division is a broad organisational category. A strategic unit brings together work around a specifically named priority.

These priorities should not be collapsed into a generic technology story. Arctic geological research can require field data, geophysical observations, maps, samples, and models. Synthetic biology can require molecular systems, biological material, sequence information, and controlled experiments. Nonlinear photonics may involve optical components, signals, materials, and measurement. The unit titles give a reader an accurate vocabulary for moving toward a close source. They do not by themselves document a current project, an individual's role, or the particular evidence used by every participating team.

The NSU Climate Center connects carbon balances, forest models, materials, and verification

The NSU Climate Center adds a concrete environmental route to the wider research map. Its public page names carbon polygons and farms, regional carbon balances, a digital model of forest ecosystems, autonomous power engineering, greenhouse-gas validation and verification, and geopolymers. These are related to climate and environmental questions, but they remain different tasks. A regional carbon balance concerns information on emissions and absorption. A forest model brings together data on ecosystem condition and possible changes. Greenhouse-gas verification concerns an independent documented evaluation process. Geopolymers concern materials made from inorganic raw materials. The page is useful because it names the distinctions rather than using climate as a catch-all term.

A reader can use these categories to form a more exact NSU inquiry. A forest question may need spatial data, ecological observations, time series, and modelling. An emissions question may need inventories, methods, documentation, and verification criteria. A materials question may need composition, mechanical properties, thermal behaviour, and production context. The Climate Center page shows that these routes are publicly named at NSU. It does not confirm that a chosen project is open, that a resource is available, or that every environmental topic fits the centre. The profile remains strongest when it keeps those limits visible while directing readers to the appropriate local record.

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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