M.S. in Bioengineering
The Master of Science (M.S.) in Bioengineering program at the University of Dayton is a...
Dayton, Ohio
INTAKE: Jan, May & Aug
The Bachelor of Science (B.S.) in Physical Science at the University of Dayton is designed to provide students with a broad understanding of the physical sciences, integrating core concepts from physics, chemistry, and mathematics. This interdisciplinary program is tailored for students who wish to explore the fundamental principles governing the natural world and prepare for careers in research, education, or industry. The program combines theoretical knowledge with practical skills, offering a rigorous education in physical science while emphasizing the development of critical thinking and problem-solving abilities.
STEM Designated: The B.S. in Physical Science is recognized as a STEM (Science, Technology, Engineering, and Mathematics) program. This designation highlights the program’s focus on scientific and technical education, equipping students with the quantitative and analytical skills essential for careers in scientific research, technology, and related fields. STEM designation also supports the program’s alignment with national and international standards for scientific education and professional development.
Curriculum: The curriculum for the B.S. in Physical Science is designed to offer a comprehensive foundation in the physical sciences while allowing students to tailor their studies to their interests. Core courses include subjects such as classical mechanics, electromagnetism, quantum mechanics, physical chemistry, and advanced mathematics. Students also engage in laboratory work and practical experiments to apply theoretical concepts. The program includes elective courses that enable students to explore specialized areas such as materials science, environmental science, or computational physics, depending on their career goals and interests.
Research Focus: The B.S. in Physical Science program emphasizes research and hands-on experience as integral components of the learning process. Students have opportunities to engage in independent research projects, often working closely with faculty members on cutting-edge scientific investigations. Research focus areas may include experimental physics, chemical analysis, computational modeling, and more. The program encourages students to participate in research activities, present their findings at conferences, and contribute to scientific publications, enhancing their academic and professional development.
Industry Engagement: The program fosters strong connections with industry through internships, collaborative projects, and partnerships with local and regional businesses. Students are encouraged to gain practical experience through internships and co-op programs, where they can apply their knowledge in real-world settings and build professional networks. Industry engagement also includes guest lectures, workshops, and career fairs, providing students with insights into the latest industry trends and opportunities for employment.
Global Perspective: The B.S. in Physical Science program incorporates a global perspective by exposing students to international scientific research and developments. The curriculum may include study abroad opportunities, international collaborations, and global scientific issues, preparing students to work in a globalized scientific community. This global perspective helps students understand the impact of science on global challenges and encourages them to consider international career opportunities.
Dayton, Ohio
IELTS 6
USD 49300
Undergraduate Entry Requirements
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 Dayton offers a range of scholarships and financial aid options for international students. These scholarships are designed to recognize academic achievement, leadership potential, and contributions to the campus community.
International Merit Scholarships: These scholarships are awarded to international students based on their academic achievements. The awards are typically merit-based and do not require a separate application. The selection is made at the time of admission.
Leadership in Service Scholarship: This scholarship is for students who have demonstrated exceptional leadership and community service involvement. It is open to both undergraduate and graduate international students.
Global Ambassador Scholarship: This scholarship is specifically for undergraduate international students who have a strong commitment to promoting cultural understanding and global engagement. It is awarded to students who serve as Global Ambassadors.
Provost's Scholarship: The Provost's Scholarship is a merit-based award for both undergraduate and graduate international students. The scholarship amount varies, and it is awarded based on academic performance.
Talent-Based Scholarships: These scholarships are available for international students with exceptional talents in the arts, such as music, theater, or visual arts. Auditions or portfolios may be required for consideration.
Country-Specific Scholarships: The University of Dayton may offer scholarships specific to certain countries or regions. These scholarships aim to enhance diversity and international representation on campus.
External Scholarships: International students are encouraged to explore external scholarship opportunities, such as those offered by government agencies, foundations, or private organizations. The university provides guidance and support for students seeking external funding.
It's important to note that scholarship availability, eligibility criteria, and award amounts may change from year to year.
Graduates of the B.S. in Physical Science program from the University of Dayton are equipped with a diverse skill set and a strong foundation in the physical sciences, making them well-suited for a range of career paths. The program's emphasis on scientific principles, research skills, and practical experience prepares students for various roles in industry, research, and education.
Scientific Researcher: Graduates can pursue careers as scientific researchers in academia, government labs, or private industry. They may work on projects related to physics, chemistry, materials science, or other areas of physical science, conducting experiments, analyzing data, and contributing to advancements in their field. Research roles often involve working in labs, publishing research findings, and collaborating with other scientists.
Laboratory Technician: Laboratory technicians play a crucial role in conducting experiments, maintaining equipment, and ensuring accurate data collection. They work in a variety of settings, including research institutions, healthcare facilities, and industrial labs. Their responsibilities may include preparing samples, operating analytical instruments, and performing quality control procedures.
Data Analyst: With strong analytical skills and a background in quantitative methods, graduates can work as data analysts, interpreting complex data sets and generating insights for businesses or research organizations. Data analysts use statistical tools and software to identify trends, make predictions, and support decision-making processes across various industries.
Environmental Scientist: Graduates interested in environmental issues can work as environmental scientists, focusing on areas such as pollution control, resource management, and environmental protection. They analyze environmental data, assess the impact of human activities on ecosystems, and develop strategies to address environmental challenges.
Materials Scientist: Materials scientists study the properties and applications of materials, including metals, polymers, and ceramics. They work in industries such as manufacturing, aerospace, and electronics, developing new materials or improving existing ones for specific applications. Their work often involves conducting experiments, analyzing material properties, and collaborating with engineers and designers.
Education and Outreach Specialist: Graduates interested in education can pursue careers as science educators or outreach specialists. They may teach physical science at the high school or college level, develop educational materials, and engage with the community through science outreach programs. This role involves sharing scientific knowledge and fostering an interest in science among students and the public.
Quality Control Analyst: In manufacturing and production industries, quality control analysts ensure that products meet established standards and specifications. They conduct inspections, perform tests, and analyze data to identify and resolve quality issues. Their work is essential for maintaining product quality and safety.
Science Policy Analyst: Science policy analysts work at the intersection of science and policy, analyzing and advising on issues related to science and technology. They may work for government agencies, think tanks, or advocacy organizations, providing insights on science policy, regulatory matters, and funding priorities.
Technical Sales Specialist: Graduates with strong communication skills can work as technical sales specialists, promoting and selling scientific equipment, software, or services. They leverage their technical knowledge to explain product features, demonstrate value, and support customers in making informed purchasing decisions.
Consultant: Physical science graduates can work as consultants, offering expert advice to businesses, governments, or non-profits on scientific and technical matters. Consultants use their specialized knowledge to solve problems, optimize processes, and provide strategic recommendations.