M.S. in Biology
The Master of Science (M.S.) in Biology at the University of Wisconsin–La Crosse ...
La Crosse, Wisconsin
INTAKE: Jan & Sept
The B.S. in Chemistry/Engineering (Dual Degree) program at the University of Wisconsin-La Crosse offers a unique academic pathway for students interested in both chemistry and engineering. This program provides students with an interdisciplinary education, combining the scientific principles of chemistry with the practical application of engineering. Upon completion, graduates earn two degrees—one in chemistry and one in engineering—preparing them for a wide range of career opportunities in industries like materials science, pharmaceuticals, biotechnology, and environmental engineering.
STEM-designated: The B.S. in Chemistry/Engineering (Dual Degree) is designated as a STEM (Science, Technology, Engineering, and Mathematics) program, reflecting its strong focus on providing students with a rigorous foundation in scientific and engineering principles. This designation allows graduates to access various STEM-related career opportunities and, in some cases, extend their post-graduation work visas (for international students) under STEM OPT regulations.
Curriculum: The curriculum for the B.S. in Chemistry/Engineering (Dual Degree) is designed to equip students with a solid understanding of both fundamental chemistry and advanced engineering concepts. Students complete a series of core courses in chemistry, including organic, inorganic, and physical chemistry, alongside engineering courses in areas like thermodynamics, materials science, and mechanical or electrical engineering principles. The program is structured to allow students to develop expertise in both fields, and the coursework is integrated to emphasize real-world applications.
Research Focus: Students in the B.S. in Chemistry/Engineering program at UW-La Crosse are encouraged to engage in research that bridges the gap between chemistry and engineering. Research opportunities often focus on innovative areas like nanotechnology, renewable energy, sustainable materials, and chemical engineering processes. Under the guidance of faculty members, students can work on projects that explore new materials, chemical reactions, or processes that could have practical applications in industries ranging from energy production to environmental protection.
Industry Engagement: The dual degree program offers strong industry engagement through internships, collaborative research projects, and professional development opportunities. Students gain practical experience working with industry partners, government agencies, and research organizations. These connections help students build valuable networks in both the chemistry and engineering fields and better prepare them for post-graduation employment. The program’s focus on hands-on learning ensures that students are not only exposed to theoretical knowledge but also acquire real-world skills.
Global Perspective: The B.S. in Chemistry/Engineering (Dual Degree) program also offers a global perspective by encouraging students to study international practices in both chemistry and engineering. Students may have opportunities to participate in study-abroad programs or internships with global companies, gaining insights into how chemistry and engineering are applied in different cultural and technological contexts. This global outlook is designed to prepare students to work in diverse, multicultural teams and address global challenges such as climate change, energy sustainability, and technological innovation.
La Crosse, Wisconsin
IELTS 6
USD 18825
Undergraduate Entry Requirements
Application Fee: $25
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 65% or above in their previous academic qualifications.
English Language Proficiency:
The University of Wisconsin–La Crosse is dedicated to promoting diversity and fostering an inclusive campus community. Through a range of scholarships for international students, UWL aims to make higher education accessible and provide financial support to those who demonstrate academic excellence, leadership, and cultural diversity.
Global Cultures Scholarship: UWL offers the Global Cultures Scholarship to international students who demonstrate promoting cultural diversity and understanding. This merit-based award recognizes students who actively contribute to the international community on campus.
International Education & Engagement (IEE) Tuition Scholarship: The IEE Tuition Scholarship is designed to support international students who have excelled academically. It provides financial assistance to help cover tuition costs, making quality education more accessible to students from around the world.
International Excellence Scholarship: This scholarship is awarded to outstanding international students who have demonstrated exceptional academic achievements. The International Excellence Scholarship reflects UWL's attracting and supporting high-achieving students from diverse backgrounds.
INTO UWL Scholarship Programs: INTO UWL, a program designed to assist international students with their academic and cultural transition, offers several scholarship opportunities. These scholarships may cover a portion of tuition costs and are aimed at encouraging students to pursue their academic goals at UWL.
Athletic Scholarships: UWL provides opportunities for international students with exceptional athletic abilities through its athletic scholarship programs. These scholarships are available for various sports and can contribute to tuition, fees, and other related expenses.
Cultural Diversity Scholarship: UWL values diversity and encourages students from different cultural backgrounds to apply for the Cultural Diversity Scholarship. This award recognizes the unique perspectives and contributions that international students bring to the university community.
Graduates of the B.S. in Chemistry/Engineering (Dual Degree) program at the University of Wisconsin-La Crosse are equipped with a robust interdisciplinary skill set that opens doors to a wide variety of career opportunities across industries. The combination of chemistry and engineering knowledge makes them highly competitive in fields such as pharmaceuticals, environmental engineering, materials science, energy production, biotechnology, and manufacturing.
Chemical Engineer: With a strong foundation in chemistry and engineering principles, graduates may work as chemical engineers, designing, optimizing, and implementing chemical processes in industries such as energy, petrochemicals, pharmaceuticals, or food processing. They may be involved in product development, process optimization, and the scaling of laboratory processes to full industrial production.
Materials Scientist/Engineer: Graduates can apply their knowledge of chemistry and engineering to the development and analysis of new materials, including polymers, metals, and nanomaterials. Materials scientists and engineers work in industries such as aerospace, electronics, automotive, and renewable energy, contributing to the development of innovative materials that drive technological advancement.
Environmental Engineer: Graduates of this program are well-suited for careers in environmental engineering, where they use their understanding of chemical processes and engineering design to develop solutions for environmental challenges. These may include water and wastewater treatment, air quality management, waste management, and sustainable resource use.
Biotechnology and Pharmaceuticals: The dual focus on chemistry and engineering enables graduates to work in biotechnology and pharmaceutical industries, where they may be involved in drug development, biotechnology process engineering, or biomanufacturing. Roles may include process development engineer, bioengineer, or research scientist, working to improve products or create innovative solutions in healthcare.
Energy Engineer: Graduates can work in the renewable energy sector, applying their expertise to the design and optimization of energy systems. This may include developing new technologies for solar, wind, and bioenergy, or improving existing energy systems to enhance efficiency and reduce environmental impact.
Chemical Safety and Compliance Officer: Graduates may pursue roles that focus on safety, environmental regulations, and compliance within industries that handle chemicals. These professionals ensure that organizations adhere to local, state, and federal regulations governing chemical processes, safety protocols, and waste disposal.
Product Development and Process Improvement Specialist: In manufacturing or technology sectors, graduates can contribute to product design and process improvement, ensuring the efficiency, cost-effectiveness, and sustainability of production methods. They may work in industries ranging from consumer electronics to industrial machinery.
Academia and Research: Some graduates may choose to further their studies with graduate programs in chemistry, engineering, or interdisciplinary fields, pursuing careers as researchers or professors. Their strong research background positions them for roles in academic institutions, research labs, or research and development departments within companies.
Consulting and Technical Advisory: Graduates may also enter consulting roles, where they offer technical advice to companies in industries such as chemicals, engineering, energy, or manufacturing. These positions involve analyzing business challenges, proposing solutions, and helping implement strategies that integrate chemistry and engineering innovations.