University of Wisconsin Campus
Master of Science
On Campus
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University of Wisconsin
Madison
United States

Chemical Engineering

About

The Chemical Engineering Master’s program at the University of Wisconsin is a rigorous two-year, full-time on-campus program designed for students who want to advance their knowledge and expertise in the field of chemical engineering. This program offers a comprehensive education in the fundamental principles of chemical reactions, materials science, and process engineering, while also exploring cutting-edge technologies and innovations in biochemical engineering, nanotechnology, and sustainable energy. Students will gain a strong foundation in thermodynamics, fluid dynamics, transport phenomena, and reaction engineering, preparing them to address complex challenges in chemical production, environmental sustainability, and product development.

Throughout the program, students will apply engineering principles to real-world problems, engaging in hands-on laboratory work, industry-sponsored projects, and collaborative research. The program emphasizes both theoretical knowledge and practical application, allowing students to work on diverse engineering challenges in fields such as biotechnology, pharmaceuticals, energy, and environmental engineering. Graduates will leave the program with the technical proficiency, problem-solving skills, and leadership qualities necessary to excel in industry, research, and academic positions in chemical engineering.

Key information

Duration
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Tuition fee
$25,732.00/year
Start dates & application deadlines
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More details
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Key Facts

  • Program Title: Chemical Engineering
  • Degree Type: Master of Science
  • Duration: 2 years
  • Mode of Study: Full-time, On Campus
  • Application Deadline: 05 January 2026
  • Location: University of Wisconsin, United States
  • Field of Study: Chemical Engineering
  • Language of Instruction: English

Program Structure

Semester 1 – Foundations of Chemical Engineering

  • Introduction to Chemical Engineering and Process Principles
  • Thermodynamics and Transport Phenomena
  • Fluid Mechanics and Heat Transfer
  • Materials Science for Chemical Engineers

Semester 2 – Advanced Chemical Engineering Concepts

  • Reaction Engineering and Kinetics
  • Process Control and Optimization
  • Mass Transfer and Separation Processes
  • Advanced Thermodynamics for Chemical Engineers

Semester 3 – Specialized Topics and Applications

  • Biochemical Engineering and Biotechnology
  • Environmental Engineering and Sustainable Processes
  • Nanomaterials and Nanotechnology in Chemical Engineering
  • Advanced Process Design and Simulation

Semester 4 – Research Project and Capstone

  • Independent Research Project or Thesis
  • Process Safety and Risk Management
  • Engineering Ethics and Professional Practice
  • Final Thesis Defense and Presentation

Career Opportunities

Graduates of the Chemical Engineering Master’s program at the University of Wisconsin are well-prepared for a wide range of careers in chemical engineering and related industries. With expertise in process design, materials science, and biochemical engineering, graduates can pursue roles as chemical engineers, process engineers, product developers, research scientists, or project managers. Many work in industries such as pharmaceuticals, energy, environmental engineering, and biotechnology, where they can apply their knowledge to develop innovative products and sustainable processes. The program’s strong emphasis on research and real-world applications also prepares graduates for advanced positions in R&D and leadership roles within large corporations or government agencies. Additionally, the program serves as an excellent foundation for those interested in pursuing doctoral studies in chemical engineering or related fields.

Why Choose This Program

The Chemical Engineering Master’s program at the University of Wisconsin offers a rigorous, well-rounded education that integrates theoretical foundations with practical experience. The program’s focus on cutting-edge research, sustainability, and innovative technologies ensures that students are prepared to tackle the most pressing challenges in the chemical engineering field, from renewable energy to biotechnology and environmental protection. Students benefit from a diverse range of specialized courses, hands-on laboratory work, and industry partnerships, giving them a competitive edge in the job market. The program also fosters a collaborative learning environment, with opportunities to work closely with faculty researchers, industry professionals, and fellow students. Graduates leave the program equipped with the technical knowledge and leadership skills to drive innovation and sustainability in the rapidly evolving field of chemical engineering.

Contact Information

For further information, please contact the admissions office at:
Phone: +1 608-262-2433
Email: admissions@grad.wisc.edu
Address: 217 Bascom Hall, 500 Lincoln Drive, Madison, WI 53706, USA