M.S. in Biology
Tennessee Tech University offers an exceptional Master of Science (M.S.) in Biology pro...
Cookeville, Tennessee
INTAKE: Jan & Aug
The B.S. in Chemical Engineering with a concentration in Bio-Molecular Engineering at Tennessee Tech University is designed for students interested in the intersection of chemical engineering and biotechnology. This program focuses on the application of chemical engineering principles to biological systems, aiming to develop innovative solutions for medical, pharmaceutical, and biotechnological applications. Students are prepared for careers in industries such as pharmaceuticals, biotechnology, and environmental engineering.
STEM-Designated: This program is designated as a STEM (Science, Technology, Engineering, and Mathematics) program, highlighting its focus on technical and scientific education. The STEM designation ensures that students receive rigorous training in advanced engineering principles and techniques, preparing them for roles in high-demand fields where scientific and technical expertise is critical.
ABET-Accredited: The B.S. in Chemical Engineering at Tennessee Tech University is accredited by the Accreditation Board for Engineering and Technology (ABET). This accreditation guarantees that the program meets high standards of quality and rigor in engineering education, providing students with a solid foundation in chemical engineering principles and practices.
Curriculum: The curriculum for the B.S. in Chemical Engineering - Bio-Molecular Engineering includes core courses in chemical engineering fundamentals, such as thermodynamics, fluid mechanics, and chemical reaction engineering, combined with specialized courses in bio-molecular engineering. Students will study subjects like biochemical engineering, bioinformatics, molecular biology, and bio-processes. The curriculum is designed to integrate theoretical knowledge with practical skills through laboratory work and project-based learning.
Research Focus: Research in the Bio-Molecular Engineering concentration focuses on the development and application of engineering solutions to biological and medical challenges. Key research areas include the engineering of biological systems for drug development, genetic engineering, biomaterials, and the design of bioprocesses for producing pharmaceuticals and other bio-products. Students have opportunities to participate in cutting-edge research projects and contribute to advancements in biotechnology and molecular engineering.
Industry Engagement: Tennessee Tech University emphasizes industry engagement through partnerships with biotech and pharmaceutical companies, as well as through internships and cooperative education programs. Students have the opportunity to work with industry professionals, gain practical experience, and apply their knowledge to real-world problems. These industry connections help students build networks and enhance their career prospects in the bio-molecular engineering field.
Global Perspective: The program incorporates a global perspective by addressing international issues and trends in biotechnology and chemical engineering. Students learn about global challenges in health, environmental sustainability, and technological advancements. The program prepares graduates to work in a global context, understanding the impact of their work on international markets and collaborating with professionals from diverse backgrounds.
Cookeville, Tennessee
IELTS 6
USD 27786
Undergraduate Entry Requirements
Application Fee: $40
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 70% or above in their previous academic qualifications.
English Language Proficiency:
Tennessee Tech University (TTU) recognizes the importance of financial support for international students pursuing higher education in the United States. The university offers a variety of scholarships and financial aid opportunities to help offset the cost of tuition and promote academic excellence.
International Transfer Scholarships: These scholarships are designed for international transfer students who are transferring from a community college or another university to Tennessee Tech. The awards are based on academic achievement and range in value.
Presidential Scholarship: The Presidential Scholarship is one of TTU's most prestigious awards. It is offered to high-achieving international students who have demonstrated exceptional academic performance. This scholarship covers full tuition and fees.
Provost Scholarship: The Provost Scholarship is another highly competitive scholarship for outstanding international students. It provides significant financial support, including tuition and fees, to deserving recipients.
Academic Performance Scholarships: TTU offers a range of academic performance scholarships that are based on a student's GPA, standardized test scores (SAT or ACT), and other academic achievements. These scholarships can vary in value.
Departmental Scholarships: Some academic departments at TTU offer departmental scholarships to international students who are majoring in specific fields. These scholarships are typically based on academic performance and departmental criteria.
Honors Program Scholarships: TTU's Honors Program offers scholarships to international students who have been admitted to the program. These scholarships are designed to support students pursuing an enriched academic experience.
External Scholarships: TTU encourages international students to explore external scholarship opportunities offered by organizations, foundations, and government agencies in their home countries. The university's international education office can assist students in identifying and applying for these scholarships.
Financial Aid and Work-Study Programs: In addition to scholarships, TTU offers financial aid options and work-study programs to help international students with their educational expenses. These opportunities can provide valuable financial support.
Renewable Scholarships: - Many of the scholarships mentioned above are renewable, meaning that students can continue to receive funding for the duration of their academic program as long as they meet specific academic and eligibility criteria.
Graduates of the B.S. in Chemical Engineering with a concentration in Bio-Molecular Engineering from Tennessee Tech University are well-positioned for diverse and dynamic career opportunities. This specialized program provides a strong foundation in both chemical engineering and biotechnology, opening doors to a variety of roles in several key sectors.
Biotechnology Engineer: Designing and optimizing biotechnological processes, including the development of new drugs, vaccines, and diagnostic tools. Biotechnology engineers work on innovations that improve healthcare and address biological challenges.
Pharmaceutical Engineer: Involved in the design and manufacturing of pharmaceutical products. These professionals ensure the efficiency, safety, and effectiveness of medications, working in pharmaceutical companies or research laboratories.
Biochemical Engineer: Applying engineering principles to biological processes for producing chemicals, fuels, and other products. Biochemical engineers often work in industries that focus on renewable resources and sustainable production.
Process Development Scientist: Developing and scaling up processes for the production of biological products, such as biologics and cell therapies. This role involves working in research and development settings to optimize production techniques.
Clinical Research Coordinator: Overseeing clinical trials and studies to evaluate the efficacy and safety of new bio-molecular therapies and treatments. Coordinators manage the logistics of trials and ensure regulatory compliance.
Regulatory Affairs Specialist: Ensuring that biotechnology and pharmaceutical products meet all regulatory requirements before they reach the market. This role involves working with regulatory agencies to navigate the approval process.
Bioinformatics Specialist: Using computational tools and techniques to analyze biological data. Bioinformatics specialists work on projects involving genomics, proteomics, and other areas of molecular biology.
Environmental Engineer: Focusing on solutions to environmental challenges through the application of bio-molecular techniques. Environmental engineers may work on projects related to waste treatment, pollution control, and sustainability.
Medical Device Engineer: Designing and improving medical devices and diagnostic equipment. This role involves working with bio-molecular engineering principles to develop technologies that enhance patient care.
Academic or Industrial Researcher: Conducting advanced research in academic institutions or industry settings. Researchers in this field contribute to the development of new technologies and innovations in bio-molecular engineering.