B.S. in Chemical Engineering

Athens, Ohio

 

INTAKE: Jan & Aug

Program Overview

Ohio University's Bachelor of Science (B.S.) in Chemical Engineering program offers a comprehensive and hands-on approach to preparing students for a dynamic career in the field of chemical engineering. The program combines a strong foundation in science and engineering principles with practical applications, ensuring graduates are well-equipped for the challenges of the chemical industry. The curriculum is STEM designated, emphasizing science, technology, engineering, and mathematics, and holds accreditation from the Accreditation Board for Engineering and Technology (ABET). Ohio University's B.S. in Chemical Engineering program stands at the intersection of academic excellence and practical application, equipping students with a robust skill set and the knowledge needed to thrive in the ever-evolving field of chemical engineering. The STEM designation, emphasis on hands-on experience, and ABET accreditation underscore the program's commitment to producing highly competent and industry-ready graduates.

Curriculum:

  1. STEM Designation: The program holds STEM designation, highlighting its focus on Science, Technology, Engineering, and Mathematics. This designation reflects the program's commitment to providing students with a robust education in these critical areas, aligning with the demands of contemporary industries and technological advancements.

  2. ABET Accreditation: The B.S. in Chemical Engineering program is accredited by the Accreditation Board for Engineering and Technology (ABET), signifying that it meets the rigorous standards set for engineering programs. ABET accreditation ensures that graduates are well-prepared for professional practice and lays the foundation for potential licensure as a Professional Engineer.

  3. Rigorous Core Curriculum: The B.S. in Chemical Engineering program features a rigorous core curriculum that covers fundamental principles in mathematics, physics, chemistry, and engineering. Students delve into courses such as thermodynamics, fluid mechanics, heat transfer, and process control, establishing a strong foundation in the core concepts essential for chemical engineering.

  4. Hands-On Laboratory Experience: Recognizing the importance of practical skills, the program emphasizes hands-on laboratory experiences. Students have the opportunity to apply theoretical knowledge in state-of-the-art laboratories, conducting experiments related to chemical processes, reaction engineering, and materials science. This hands-on approach enhances problem-solving abilities and prepares students for real-world challenges.

  5. Interdisciplinary Approach: Chemical engineering often involves collaboration with various scientific disciplines. The program adopts an interdisciplinary approach, encouraging students to integrate knowledge from chemistry, physics, and engineering. This holistic perspective enables graduates to address complex challenges and contribute to advancements in diverse fields, from pharmaceuticals to energy production.

  6. Capstone Design Project: In the final year of the program, students engage in a capstone design project that integrates their accumulated knowledge and skills. Working in teams, students tackle real-world engineering challenges, applying their understanding of chemical engineering principles to design innovative and practical solutions. This project serves as a culmination of their academic journey and prepares them for the complexities of the professional realm.

Pollster Education

Location

Athens, Ohio

Pollster Education

Score

IELTS: 6

Pollster Education

Tuition Fee

USD 23720

Undergraduate Entry Requirements:

  1. Academic Requirements (GPA):

    • Prospective undergraduate students are generally required to have achieved an academic performance in the range of 75% to 85% in their previous studies. This is a key factor in the admission decision-making process.
       
  2. English Language Proficiency:

    • IELTS : The university typically requires an overall IELTS score of 6, with no individual band score falling below 5.5.
    • TOEFL : Ohio University commonly requires a minimum overall TOEFL score of 68, with no individual section scoring below 17.
    • DET: Ohio University often requires a minimum overall DET score of 95 for undergraduate admission.
       
  3. SAT/ACT test scores are required if student wishes to be considered for merit-based scholarships.

Ohio University is committed to fostering global diversity and academic excellence. The university offers a range of scholarships to support international students in pursuing their education at Ohio University.

Global Scholars Program: The Global Scholars Program at Ohio University is designed to attract high-achieving international students. This merit-based scholarship provides significant financial support for both undergraduate and graduate students. Recipients of the Global Scholars Program not only receive financial assistance but also benefit from mentorship, leadership development, and cultural engagement opportunities.

International Student Tuition Awards: Ohio University offers International Student Tuition Awards to assist non-resident international students with their tuition costs. These awards are based on academic merit and are available to both undergraduate and graduate students. The scholarship amount varies, and it contributes to making Ohio University's education more accessible to talented individuals from around the world.

Graduate Assistantships: For international students pursuing graduate studies, Ohio University provides Graduate Assistantship opportunities. These assistantships may involve teaching, research, or administrative responsibilities and often come with a stipend, tuition remission, and health insurance benefits. Graduate Assistantships not only offer financial support but also valuable professional development experience.

OHIO Signature Awards: The OHIO Signature Awards are competitive scholarships that recognize outstanding academic achievement and leadership qualities. International students are eligible to apply for these scholarships, which cover a portion of tuition costs. The awards are available for both undergraduate and graduate programs.

College-Specific Scholarships: Ohio University's colleges and departments may offer specific scholarships tailored to students within particular academic disciplines. International students are encouraged to explore scholarship opportunities within their respective colleges, such as the College of Business, College of Arts and Sciences, or Russ College of Engineering and Technology.

To apply for these scholarships, international students typically need to demonstrate strong academic performance, provide letters of recommendation, and submit personal statements outlining their achievements and aspirations. It's essential for prospective international students to check the official Ohio University scholarship website for the most up-to-date information, application deadlines, and eligibility criteria. Additionally, the university's International Student and Faculty Services (ISFS) office can provide valuable guidance and support throughout the scholarship application process.

Graduates of Ohio University's Bachelor of Science (B.S.) in Chemical Engineering program are well-positioned for diverse and rewarding career opportunities in industries that span from energy and pharmaceuticals to environmental sustainability. The program's rigorous curriculum, STEM designation, and ABET accreditation equip students with a strong foundation in both theoretical knowledge and practical skills, making them highly sought-after in the professional landscape. Ohio University's B.S. in Chemical Engineering program equips graduates with the expertise and versatility needed to excel in a wide range of industries. The program's emphasis on STEM principles and hands-on experience positions graduates as valuable contributors to innovation, sustainability, and technological advancements in the professional landscape.

  1. Process Engineer: Graduates can pursue roles as Process Engineers in industries such as chemical manufacturing, petroleum refining, or pharmaceuticals. They play a crucial role in optimizing production processes, ensuring efficiency, safety, and adherence to industry regulations.

  2. Environmental Engineer: With a focus on sustainability and environmental responsibility, graduates may choose to become Environmental Engineers. They can work on projects related to waste management, pollution control, and sustainable practices, contributing to the development of environmentally friendly solutions.

  3. Biomedical Engineer: Leveraging their chemical engineering background, graduates may explore opportunities in the biomedical field. They can contribute to the development of medical devices, pharmaceuticals, or biotechnology products that advance healthcare and improve patient outcomes.

  4. Energy Analyst: Graduates may pursue roles as Energy Analysts, working on projects related to energy efficiency, renewable energy, and sustainability. They can contribute to the development of cleaner and more efficient energy sources, aligning with the global push towards sustainable practices.

  5. Materials Engineer: With a focus on the properties and applications of materials, graduates may choose to become Materials Engineers. They can work in industries such as electronics, aerospace, or automotive, contributing to the development of innovative materials with specific properties.

  6. Quality Control Engineer: Graduates may find opportunities as Quality Control Engineers, ensuring that products meet industry standards and specifications. They play a crucial role in maintaining the quality and reliability of manufactured goods.

  7. Project Manager: Building on their engineering and organizational skills, graduates can pursue roles as Project Managers. They may oversee engineering projects from conception to completion, ensuring that timelines, budgets, and quality standards are met.

  8. Research and Development Scientist: Graduates can contribute to the advancement of scientific knowledge by working as Research and Development Scientists. They may engage in innovative research projects, exploring new technologies, processes, or materials that have practical applications.

  9. Safety Engineer: With a focus on workplace safety, graduates may pursue roles as Safety Engineers. They can work in industries such as manufacturing or petrochemicals, implementing safety protocols, conducting risk assessments, and ensuring compliance with safety regulations.

  10. Consulting Engineer: Graduates may choose to work as Consulting Engineers, providing expertise to businesses and organizations. They can offer insights on process optimization, environmental impact, or regulatory compliance, helping clients navigate complex engineering challenges.

  11. Pharmaceutical Engineer: Leveraging their knowledge of chemical processes, graduates may enter the pharmaceutical industry. They can contribute to the development and production of pharmaceutical drugs, ensuring the quality and efficiency of manufacturing processes.

  12. Supply Chain Analyst: Graduates with a strong analytical background may pursue roles as Supply Chain Analysts. They can optimize supply chain processes, ensuring the efficient and cost-effective movement of materials and products within the manufacturing sector.

  13. Nuclear Engineer: Graduates may explore opportunities in the field of nuclear engineering, contributing to the design, operation, and maintenance of nuclear power plants or engaging in research related to nuclear technologies.

  14. Food and Beverage Engineer: With a focus on the production and optimization of food and beverage processes, graduates may enter the food industry. They can contribute to the development of efficient and safe manufacturing processes in this sector.

  15. Entrepreneurship and Innovation: Graduates may choose to start their ventures, leveraging their knowledge and skills to innovate in areas such as renewable energy, sustainable technologies, or new materials.


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