Masters of Business Administration (MBA)
Wright State University, located in Dayton, Ohio, offers a prestigious Master of Busine...
Dayton, Ohio
INTAKE: Jan, May & Aug
Wright State University’s Bachelor of Science (B.S.) in Materials Science and Engineering is designed to equip students with the fundamental knowledge and practical skills required to understand and manipulate materials at the atomic and molecular levels. The program focuses on the development, processing, and application of various materials, including metals, polymers, ceramics, and composites. It prepares students for careers in industries such as aerospace, automotive, electronics, and manufacturing, where materials innovation and optimization are critical.
STEM-Designated: The B.S. in Materials Science and Engineering is classified as a STEM (Science, Technology, Engineering, and Mathematics) program. This designation underscores the program's emphasis on scientific and technical education, aligning with industry standards and addressing current technological challenges. The STEM classification highlights the program’s commitment to producing graduates with strong analytical skills and technical expertise in materials science and engineering.
ABET-Accredited: The program is accredited by the Accreditation Board for Engineering and Technology (ABET), ensuring that it meets high standards of quality and rigor in engineering education. ABET accreditation confirms that the program provides a comprehensive education that prepares students for professional practice and meets the needs of the engineering industry. Accreditation by ABET is a mark of excellence that enhances the credibility of the program and the value of the degree.
Curriculum: The curriculum for the B.S. in Materials Science and Engineering at Wright State University combines core engineering principles with specialized courses in materials science. Students begin with foundational courses in mathematics, physics, and chemistry, followed by core engineering courses such as thermodynamics, mechanics of materials, and materials characterization. Advanced coursework includes materials processing, mechanical behavior of materials, electronic materials, and biomaterials. The program also emphasizes hands-on learning through laboratory work, design projects, and a capstone design experience.
Research Focus: Research is a vital component of the B.S. in Materials Science and Engineering program. Students have the opportunity to engage in research projects that explore new materials, improve existing materials, and develop innovative applications. Research areas may include nanomaterials, composite materials, advanced ceramics, and sustainable materials. Faculty-led research initiatives provide students with practical experience and the chance to contribute to cutting-edge developments in materials science.
Industry Engagement: The program emphasizes strong industry engagement, with opportunities for students to collaborate with industry partners on real-world projects and internships. Wright State University maintains relationships with leading companies in materials science and engineering, providing students with valuable networking opportunities and practical experience. Industry-sponsored projects, guest lectures from professionals, and career fairs enhance students' understanding of industry trends and job prospects.
Global Perspective: The B.S. in Materials Science and Engineering program incorporates a global perspective by addressing international challenges and advancements in materials science. Students may participate in study abroad programs, international research collaborations, and global industry partnerships. The curriculum includes topics related to global materials issues, such as sustainable development, environmental impact, and global supply chains. This international outlook prepares students to work effectively in a globalized industry and contribute to worldwide advancements in materials technology.
Dayton, Ohio
IELTS 6
USD 20906
Undergraduate Entry Requirements
Application Fee: $30
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 65% or above in their previous academic qualifications.
English Language Proficiency:
Wright State University offers several scholarships and financial aid opportunities to support international students pursuing their education in the United States. These scholarships can help offset the cost of tuition and make studying at Wright State more affordable.
International Student Merit Scholarship: Wright State offers merit-based scholarships for international students. These scholarships are awarded to outstanding students based on their academic achievements. The scholarship amount may vary depending on the student's qualifications.
Global Scholarship: The Global Scholarship is designed to recognize the cultural diversity that international students bring to the university. This scholarship may also be awarded based on academic merit and ranges in value.
International Friendship Scholarship: This scholarship is provided by the Office of International Students and Scholars (OISS) at Wright State University. It is aimed at helping international students with financial need. The amount may vary based on available funding.
External Scholarships: International students are encouraged to explore external scholarship opportunities, which may be available through various organizations, foundations, and governments. These scholarships can supplement the cost of education at Wright State.
Departmental Scholarships: Some academic departments at Wright State University offer scholarships to students pursuing specific fields of study. Eligibility and award amounts can vary.
Graduates of the Bachelor of Science (B.S.) in Materials Science and Engineering from Wright State University are well-prepared to enter a diverse array of professional fields that require expertise in materials development, testing, and application. The program's comprehensive curriculum and hands-on learning opportunities equip students with the skills needed for various roles in industry and research.
Materials Engineer: Graduates can work as materials engineers, focusing on designing, processing, and testing materials used in various applications. They may work in industries such as aerospace, automotive, electronics, and manufacturing, ensuring that materials meet performance, safety, and quality standards.
Product Development Engineer: In this role, graduates are involved in the development of new products and materials, from concept through to production. They apply their knowledge of materials properties to create innovative solutions and improve existing products.
Process Engineer: Process engineers specialize in designing and optimizing manufacturing processes for materials. They work to improve production efficiency, reduce costs, and ensure that materials are produced consistently and meet required specifications.
Quality Assurance Engineer: Graduates can pursue careers in quality assurance, where they focus on ensuring that materials and products meet industry standards and regulations. They develop and implement testing procedures, conduct inspections, and troubleshoot quality issues.
Research Scientist: With a strong foundation in materials science, graduates may become research scientists, working in academic institutions, government labs, or private research facilities. They conduct experiments to explore new materials, develop new technologies, and contribute to advancements in the field.
Biomedical Engineer: Those interested in healthcare applications may work as biomedical engineers, developing materials and devices used in medical procedures and treatments. They design and test materials for implants, prosthetics, and diagnostic equipment.
Materials Consultant: Graduates can work as consultants, providing expertise to organizations on materials selection, performance, and optimization. They may help companies solve materials-related problems, improve product design, and comply with regulatory requirements.
Sales Engineer: In this role, graduates use their technical knowledge to support sales of materials and related products. They work with clients to understand their needs, provide technical information, and help tailor solutions to meet specific requirements.
Environmental Engineer: Graduates can work in environmental engineering, focusing on developing sustainable materials and processes that minimize environmental impact. They address issues related to recycling, waste management, and the environmental impact of materials.
Education and Academia: Some graduates may choose to pursue advanced degrees and enter academia, where they can teach materials science and engineering courses, conduct research, and contribute to the academic community.