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Institution profile

New Jersey Institute of Technology (NJIT)

United States of AmericaAmericas

#761

QS World University Rankings 2026

Not listed

QS 2026 overall score

QS World University Rankings data

Ranking data

QS World University Rankings source

#761

QS World University Rankings 2026

#791

QS World University Rankings 2025

Not listed

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
7.5
QS 2026 rank
#701

Employer reputation

QS 2026 score
19.8
QS 2026 rank
#666

Faculty-student ratio

QS 2026 score
13.2
QS 2026 rank
#801

Citations per faculty

QS 2026 score
40.6
QS 2026 rank
#462

International faculty ratio

QS 2026 score
36
QS 2026 rank
#529

International student ratio

QS 2026 score
65.4
QS 2026 rank
#306

International student diversity

QS 2026 score
68.7
QS 2026 rank
#281

International research network

QS 2026 score
37.7
QS 2026 rank
#801

Employment outcomes

QS 2026 score
10.4
QS 2026 rank
#801

Sustainability

QS 2026 score
54.2
QS 2026 rank
#619
University profile

About New Jersey Institute of Technology (NJIT)

New Jersey Institute of Technology joins engineering, computing, science, and design

New Jersey Institute of Technology, usually called NJIT, is organised around engineering, computing, science and liberal arts, architecture and design, management, and related academic units. Its research directory lists departments in biomedical engineering, chemical and materials engineering, civil and environmental engineering, computer science, informatics, biological sciences, chemistry and environmental science, humanities and social sciences, and mathematics. This structure supports technical projects that also need health, environmental, economic, or social evidence.

The Newark setting connects questions about buildings, transport, energy, public services, health, and urban technology with laboratory and computational work. Engineering can address structures, materials, devices, chemical processes, and systems. Computing and informatics need software, data, networks, algorithms, and users. Science departments add biological, chemical, environmental, physical, and mathematical methods, while management and humanities provide organisational and public context.

NJIT centres cover data science, energy materials, space weather, and transportation

NJIT's research-unit directory includes a Center for Applied Mathematics and Statistics, BioSensor Materials for Advanced Research and Technology Center, Center of Materials for Advanced Energetics, CNBM New Energy Materials Research Center, Institute for Brain and Neuroscience Research, Institute for Data Science, Center for Solar-Terrestrial Research, Institute of Space Weather Sciences, Intelligent Transportation System Resource Center, and Leir Center for Financial Bubble Research. These names show a research environment that connects equations, materials, health, space, transport, and markets.

A biosensor project needs a biological target, material, device, signal, and evaluation setting. New-energy materials require a sample, fabrication process, storage or conversion measure, and test condition. Space-weather work uses solar observations, atmospheric records, models, or instruments. Intelligent transportation needs vehicles, networks, travel data, infrastructure, or human behaviour. Financial-bubble research needs markets, time series, institutions, or trading records.

How to assess a New Jersey Institute of Technology route

Start with the object that will be measured or built. Biomedical and biological work needs samples, cells, patients, devices, or health outcomes. Chemical and materials engineering needs substances, surfaces, fabrication, or properties. Civil and environmental engineering needs buildings, water, soil, transport, or infrastructure. Computer science needs code, datasets, models, or a user setting. Mathematics needs equations, simulations, or uncertainty measures. Architecture, management, and social research need spaces, firms, organisations, communities, or decisions.

For NJIT, link the college to the research object first. Then name the department or centre, the method, language, target result, and a live lab or researcher page. Describe the work as experimental, computational, urban, field-based, design-led, laboratory, organisational, or policy-oriented. Name the instrument, dataset, prototype, building, network, market, community, or public service that supplies the evidence. Newark may be the field setting, a transport or urban system, a comparison location, or simply the base of the research team. Explain its role and identify the first test, measurement, image, or record. This gives a large technology-focused university a clear path into one research question. A Newark project can also state the population, road, building, market, or device that will be observed.

A practical NJIT research question

A useful NJIT question links a technology to a performance measure. It might test a biosensor, model a transport network, analyse a space-weather record, study an energy material, evaluate software, or examine an urban service. State the object, the test, and the department that can carry out the work before using a centre to find related expertise.

Institution record

Country
United States of America
Region
Americas
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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