Syracuse University
A private research university in the city of Syracuse, in upstate New York. Its master's-level provision concentrates on engineering, from biomedical and chemical to civil, mechanical and manufacturing, together with biotechnology, giving the postgraduate offering a strongly technical character.
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SU New York City Campus
New York City, United States
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https://www.syracuse.eduPrograms at Syracuse University
Explore academic programs available at Syracuse University
MS Operations Research and Systems Analytics
Applied mathematics uses mathematical tools to describe and solve problems drawn from the physical, biological, economic and engineering worlds. Differential equations, modelling, numerical methods and computation are the everyday materials. Graduates often work in modelling and simulation, data analysis, finance, engineering, software and research.
MS Mechanical and Aerospace Engineering - Thermal/Fluids
Mechanical engineering deals with machines and moving systems: how forces, materials, heat and fluids behave, and how to design and manufacture things that work reliably. Modelling, simulation and laboratory testing support the design process. Graduates often work in manufacturing, automotive and aerospace sectors, energy, robotics, and product design or testing.
MS Mechanical and Aerospace Engineering - Solids/Structure
Mechanical engineering deals with machines and moving systems: how forces, materials, heat and fluids behave, and how to design and manufacture things that work reliably. Modelling, simulation and laboratory testing support the design process. Graduates often work in manufacturing, automotive and aerospace sectors, energy, robotics, and product design or testing.
MS Mechanical and Aerospace Engineering - Design/Manufacturing
Design is about shaping objects, images, spaces and experiences so they work well for the people who use them. Studio practice, sketching, prototyping and critique sit alongside research into users, materials and context. Graduates often work in studios and agencies, in-house creative teams, or independently across many industries.
MS Mechanical and Aerospace Engineering
Mechanical engineering deals with machines and moving systems: how forces, materials, heat and fluids behave, and how to design and manufacture things that work reliably. Modelling, simulation and laboratory testing support the design process. Graduates often work in manufacturing, automotive and aerospace sectors, energy, robotics, and product design or testing.
MS Library and Information Science - School Media
Collections are the heart of this field: how information and objects are acquired, catalogued, preserved and made available to the public. Students study the organisation of knowledge, digital archives, exhibition, and the ethics of access and ownership. Graduates often work in libraries, museums, archives, galleries, records management and cultural heritage.
MS Library and Information Science
Collections are the heart of this field: how information and objects are acquired, catalogued, preserved and made available to the public. Students study the organisation of knowledge, digital archives, exhibition, and the ethics of access and ownership. Graduates often work in libraries, museums, archives, galleries, records management and cultural heritage.
MS Information Systems
Information systems sits between technology and the organisations that use it, covering how databases, networks and software are selected, integrated and governed to support real business processes. Systems analysis, data management and project delivery are core concerns. Graduates often work as systems analysts, IT consultants, database administrators and technology project leads.
MS Environmental Engineering - Sustainability in Civil and Env Engineering
Civil engineering covers the design, construction and maintenance of the built environment: buildings, bridges, roads, water supply, drainage and other infrastructure. Mechanics, materials and structural analysis combine with project planning and constant attention to safety and cost. Graduates often work in design consultancies, construction, transport, and water or environmental engineering.
MS Environmental Engineering Science - Sustainability in Civil and Env Engineering
Sustainable development studies how human needs — energy, food, housing, work — can be met without exhausting the systems everyone depends on. It draws on economics, environmental science, governance and social equity, and asks who bears the cost of each choice. Graduates often work in development organisations, environmental programmes, policy analysis and corporate responsibility.
MS Environmental Engineering Science - Hydrology and Water Management
This field deals with the stewardship of water, soils, forests, fisheries, rangelands and minerals, weighing productive use against long-term conservation. Students combine ecology and resource economics with policy, law, monitoring methods and negotiation among competing users. Graduates work in environmental agencies, conservation organisations, consultancies, land and water management and rural development.
MS Environmental Engineering Science - Environmental Chemistry
Environmental chemistry follows chemical substances through air, water, soil and living things: where pollutants come from, how they transform and accumulate, and how they are measured and cleaned up. Analytical laboratory technique sits alongside fieldwork and modelling. Graduates often work in environmental consultancy, testing laboratories, industry, regulation and research.
MS Environmental Engineering - Hydrology and Water Management
This field deals with the stewardship of water, soils, forests, fisheries, rangelands and minerals, weighing productive use against long-term conservation. Students combine ecology and resource economics with policy, law, monitoring methods and negotiation among competing users. Graduates work in environmental agencies, conservation organisations, consultancies, land and water management and rural development.
MS Environmental Engineering - Environmental Chemistry
Environmental chemistry follows chemical substances through air, water, soil and living things: where pollutants come from, how they transform and accumulate, and how they are measured and cleaned up. Analytical laboratory technique sits alongside fieldwork and modelling. Graduates often work in environmental consultancy, testing laboratories, industry, regulation and research.
MS Engineering Management - Sustainability
Manufacturing engineering is concerned with how things get made at scale: machining and forming processes, automation, factory layout, quality control and the cost of every decision. It involves designing production lines and improving them once they are running. Graduates often work in production engineering, process improvement, automation and quality assurance.
MS Engineering Management - Operations
Manufacturing engineering is concerned with how things get made at scale: machining and forming processes, automation, factory layout, quality control and the cost of every decision. It involves designing production lines and improving them once they are running. Graduates often work in production engineering, process improvement, automation and quality assurance.
MS Engineering Management - Informatics
Informatics studies how information is structured, stored, moved and used — by computing systems and by the people and organisations around them. It sits between computing, data analysis and human behaviour, with attention to how systems are designed and adopted. Graduates often work in data and software roles, systems design, health information or research.
MS Engineering Management - Entrepreneurship
Business examines how organisations are created, financed, run and grown, from managing people and money to reading markets and making decisions under uncertainty. Coursework blends analysis with practical judgement. Graduates often move into management, consulting and entrepreneurship, or into specialist roles across finance, operations and marketing.
MS Engineering Management
Manufacturing engineering is concerned with how things get made at scale: machining and forming processes, automation, factory layout, quality control and the cost of every decision. It involves designing production lines and improving them once they are running. Graduates often work in production engineering, process improvement, automation and quality assurance.
MS Electrical Engineering
Electrical engineering deals with electricity and electronics in all their uses: circuits, signals, power generation and distribution, control systems, communications and embedded devices. Theory, mathematics and laboratory work run together. Graduates often work in energy and power, electronics and semiconductors, telecommunications, automation, transport and product development.
MS Cybersecurity
Cyber security is about protecting systems, networks and data from attack, and understanding the people and incentives behind threats. Study covers cryptography, secure design, network defence, incident response and digital forensics, together with the habits of testing and defending real systems. Graduates often work in security operations, penetration testing, risk and governance, and consultancy.
MS Computer Science
At its core, computer science is about computation: algorithms, data structures, programming languages, operating systems and the theory beneath them. Mathematical reasoning and hands-on building reinforce each other throughout. Graduates often become software engineers, or move into data, security, research, product development and technical roles in almost any industry.
MS Computer Engineering
At its core, computer science is about computation: algorithms, data structures, programming languages, operating systems and the theory beneath them. Mathematical reasoning and hands-on building reinforce each other throughout. Graduates often become software engineers, or move into data, security, research, product development and technical roles in almost any industry.
MS Civil Engineering - Structural Engineering
Civil engineering covers the design, construction and maintenance of the built environment: buildings, bridges, roads, water supply, drainage and other infrastructure. Mechanics, materials and structural analysis combine with project planning and constant attention to safety and cost. Graduates often work in design consultancies, construction, transport, and water or environmental engineering.
MS Civil Engineering - Construction/Infrastructure Engineering
Civil engineering covers the design, construction and maintenance of the built environment: buildings, bridges, roads, water supply, drainage and other infrastructure. Mechanics, materials and structural analysis combine with project planning and constant attention to safety and cost. Graduates often work in design consultancies, construction, transport, and water or environmental engineering.
MS Chemical Engineering - Synthetic Biology
Chemical biology applies the tools of chemistry to living systems, designing molecules that probe, label, or alter what happens inside cells. Laboratory work is central: synthesis, assay design, and measuring how compounds behave in biological settings. Graduates often enter pharmaceutical research, biotechnology, analytical laboratories, and academic science.
MS Chemical Engineering - Stem Cells
Stem cell science raises questions that laboratories alone cannot settle, and this field examines how it is governed: ethical debate, oversight and regulation, consent, funding priorities, public trust and the path from research to clinical use. Graduates often work in research governance, regulatory affairs, ethics and policy roles, and science communication.
MS Chemical Engineering - Renewable Energy
Renewable energy policy examines how governments and markets shift electricity, heat and transport away from fossil fuels: subsidies, carbon pricing, grid rules, permitting and public acceptance. Study blends knowledge of energy systems with economics, law and political analysis. Graduates often work in policy, regulation, utilities, consultancy and advocacy.
MS Chemical Engineering - Regenerative Medicine
Chemical engineering scales chemistry up from the flask to the plant, designing the reactors, separation units and control systems that turn raw materials into fuels, medicines, food and materials. Thermodynamics, fluid flow, heat transfer and process safety are core. Graduates often work in energy, pharmaceuticals, petrochemicals, food processing and environmental engineering.
MS Chemical Engineering - Multiscale Simulation
Chemical engineering scales chemistry up from the flask to the plant, designing the reactors, separation units and control systems that turn raw materials into fuels, medicines, food and materials. Thermodynamics, fluid flow, heat transfer and process safety are core. Graduates often work in energy, pharmaceuticals, petrochemicals, food processing and environmental engineering.
MS Chemical Engineering - Molecular Biotechnology
Biotechnology uses living systems — cells, enzymes, microbes — as tools to make useful things, from medicines and vaccines to industrial enzymes and improved crops. Laboratory technique, molecular biology and bioprocessing sit at its core, along with questions of safety and ethics. Graduates often work in pharmaceutical and agricultural research, production and quality laboratories.
MS Chemical Engineering - Mathematical and Numerical
Chemical engineering scales chemistry up from the flask to the plant, designing the reactors, separation units and control systems that turn raw materials into fuels, medicines, food and materials. Thermodynamics, fluid flow, heat transfer and process safety are core. Graduates often work in energy, pharmaceuticals, petrochemicals, food processing and environmental engineering.
MS Chemical Engineering - Indoor Air Quality
Chemical engineering scales chemistry up from the flask to the plant, designing the reactors, separation units and control systems that turn raw materials into fuels, medicines, food and materials. Thermodynamics, fluid flow, heat transfer and process safety are core. Graduates often work in energy, pharmaceuticals, petrochemicals, food processing and environmental engineering.
MS Chemical Engineering - Drug Delivery
Pharmacology asks how drugs act on living systems — at the level of molecules, cells and whole organisms — and why effects, side effects and doses differ between people. Students learn physiology, biochemistry, experimental design and how compounds are tested. Graduates often work in pharmaceutical research, clinical trials, regulation, biotechnology and academia.
MS Chemical Engineering - Complex Fluids/Soft Condensed
Chemical engineering scales chemistry up from the flask to the plant, designing the reactors, separation units and control systems that turn raw materials into fuels, medicines, food and materials. Thermodynamics, fluid flow, heat transfer and process safety are core. Graduates often work in energy, pharmaceuticals, petrochemicals, food processing and environmental engineering.
MS Chemical Engineering - Biotechnology
Biotechnology uses living systems — cells, enzymes, microbes — as tools to make useful things, from medicines and vaccines to industrial enzymes and improved crops. Laboratory technique, molecular biology and bioprocessing sit at its core, along with questions of safety and ethics. Graduates often work in pharmaceutical and agricultural research, production and quality laboratories.
MS Chemical Engineering - Biomaterials/Tissue Engineering
Biochemical engineering brings process engineering to biology, designing the reactors, separations and controls that turn cells, enzymes and microbes into medicines, foods, fuels and materials. Work is split between laboratory experiment, modelling and plant-scale design. Graduates commonly enter pharmaceutical and biotechnology manufacturing, food processing, energy and process consultancy.
MS Chemical Engineering - Biofuels
Chemical engineering scales chemistry up from the flask to the plant, designing the reactors, separation units and control systems that turn raw materials into fuels, medicines, food and materials. Thermodynamics, fluid flow, heat transfer and process safety are core. Graduates often work in energy, pharmaceuticals, petrochemicals, food processing and environmental engineering.
MS Chemical Engineering
Chemical engineering scales chemistry up from the flask to the plant, designing the reactors, separation units and control systems that turn raw materials into fuels, medicines, food and materials. Thermodynamics, fluid flow, heat transfer and process safety are core. Graduates often work in energy, pharmaceuticals, petrochemicals, food processing and environmental engineering.
MS Biomedical Engineering - Synthetic Biology
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Stem Cells
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Renewable Energy
Renewable energy policy examines how governments and markets shift electricity, heat and transport away from fossil fuels: subsidies, carbon pricing, grid rules, permitting and public acceptance. Study blends knowledge of energy systems with economics, law and political analysis. Graduates often work in policy, regulation, utilities, consultancy and advocacy.
MS Biomedical Engineering - Regenerative Medicine
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Multiscale Simulation
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Molecular Biotechnology
Biotechnology uses living systems — cells, enzymes, microbes — as tools to make useful things, from medicines and vaccines to industrial enzymes and improved crops. Laboratory technique, molecular biology and bioprocessing sit at its core, along with questions of safety and ethics. Graduates often work in pharmaceutical and agricultural research, production and quality laboratories.
MS Biomedical Engineering - Mathematical and Numerical
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Indoor Air Quality
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Drug Delivery
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Complex Fluids/Soft Condensed
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering - Biotechnology
Biotechnology uses living systems — cells, enzymes, microbes — as tools to make useful things, from medicines and vaccines to industrial enzymes and improved crops. Laboratory technique, molecular biology and bioprocessing sit at its core, along with questions of safety and ethics. Graduates often work in pharmaceutical and agricultural research, production and quality laboratories.
MS Biomedical Engineering - Biomaterials/Tissue Engineering
Biochemical engineering brings process engineering to biology, designing the reactors, separations and controls that turn cells, enzymes and microbes into medicines, foods, fuels and materials. Work is split between laboratory experiment, modelling and plant-scale design. Graduates commonly enter pharmaceutical and biotechnology manufacturing, food processing, energy and process consultancy.
MS Biomedical Engineering - Biofuels
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Biomedical Engineering
Biomedical engineering applies engineering to medicine and biology, designing devices, imaging systems, prosthetics, biomaterials and the instruments used in diagnosis and treatment. It sits between the laboratory, the clinic and the workshop, so technical rigour and human factors both count. Graduates often work in medical technology, research, hospitals, and clinical or regulatory engineering.
MS Applied Human - Centered Artificial Intelligence
Artificial intelligence studies how machines can perceive, learn, reason and act, covering machine learning, neural networks, language and vision, search and planning, and the ethical questions raised along the way. Mathematics and programming underpin the work. Graduates often work in machine learning engineering, research, data roles, robotics and product development.
MS Applied Data Science
Data science turns large and messy datasets into something useful, combining statistics, programming and machine learning with the judgement to ask sensible questions. Storage, processing at scale and clear communication of results all matter. Graduates often work as data scientists, analysts or data engineers across technology, finance, health and public services.
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