M.S. in Applied Behavior Analysis
The Master of Science (M.S.) in Applied Behavior Analysis program at Youngstown State U...
Youngstown, Ohio
INTAKE: Jan & Aug
The Bachelor of Engineering (B.E.) in Manufacturing Engineering at Youngstown State University is designed to provide students with a comprehensive education in the principles and practices of manufacturing engineering. The program focuses on preparing graduates to excel in the design, development, and improvement of manufacturing processes and systems. Students gain expertise in areas such as production management, quality control, and the integration of advanced manufacturing technologies. The program aims to equip future engineers with the skills necessary to address the challenges of modern manufacturing and to contribute effectively to the industry.
STEM Designated: The B.E. in Manufacturing Engineering is designated as a STEM (Science, Technology, Engineering, and Mathematics) program, reflecting its emphasis on technical and analytical skills. This designation highlights the program's focus on rigorous scientific and mathematical principles, providing students with a strong foundation in these critical areas. The STEM designation also aligns with the increasing demand for professionals in engineering fields who can apply advanced technical knowledge to solve complex manufacturing problems.
Curriculum: The curriculum for the B.E. in Manufacturing Engineering includes a mix of core engineering courses, specialized manufacturing topics, and practical experiences. Students take foundational courses in mathematics, physics, and engineering principles, followed by advanced courses in manufacturing processes, materials science, and industrial engineering. The program also emphasizes hands-on learning through laboratory work, design projects, and internships, allowing students to apply theoretical knowledge in real-world settings. Key topics covered include computer-aided design (CAD), robotics, automation, and quality assurance.
Research Focus: Research within the B.E. in Manufacturing Engineering program at Youngstown State University is centered on advancing manufacturing technologies and processes. Faculty members engage in research on topics such as advanced manufacturing techniques, material performance, and process optimization. This research contributes to the development of innovative solutions and improvements in manufacturing practices. Students may have opportunities to participate in research projects, gaining experience in cutting-edge technologies and contributing to the advancement of the field.
Industry Engagement: Industry engagement is a crucial aspect of the B.E. in Manufacturing Engineering program. The program maintains strong connections with manufacturing companies and industry professionals, providing students with opportunities for internships, co-op experiences, and industry-sponsored projects. These partnerships help students gain practical experience, build professional networks, and stay informed about industry trends and demands. Guest lectures, industry workshops, and collaborative projects further enhance students' understanding of the manufacturing sector.
Global Perspective: The B.E. in Manufacturing Engineering program incorporates a global perspective by addressing international trends and challenges in manufacturing. Students explore global manufacturing practices, learn about international standards and regulations, and examine the impact of globalization on manufacturing operations. This global outlook prepares students to work in diverse environments and to understand the broader context of manufacturing engineering on an international scale.
Youngstown, Ohio
IELTS 6
USD 11300
Undergraduate Entry Requirements
Application Fee: $75
Academic Qualifications: Applicants for undergraduate programs typically require a minimum academic achievement of 60% or above in their previous academic qualifications.
English Language Proficiency:
Youngstown State University (YSU) offers several scholarships and financial aid opportunities for international students to help make their education more affordable. These scholarships are highly competitive, and eligibility criteria may vary.
Global Leadership Scholarship: This scholarship is awarded to academically talented and highly motivated international students. It provides financial support for tuition and is renewable for up to eight semesters. Eligibility is based on a student's academic record and standardized test scores.
American-Midwest Scholarship: YSU offers this scholarship to undergraduate international students. It covers a portion of tuition costs and is based on academic merit.
Athletic Scholarships: For students with exceptional athletic abilities, YSU provides athletic scholarships. These scholarships are awarded to student-athletes who participate in YSU's sports programs.
Non-Resident Tuition Scholarships: Some scholarships are designed to offset the higher out-of-state tuition costs for international students. These awards help reduce the overall tuition burden.
International Student Scholarships: YSU provides general scholarships for international students to support their academic journey. These scholarships are based on merit, and the selection process is highly competitive.
Honors College Scholarships: High-achieving international students may be eligible for Honors College scholarships. These scholarships offer additional funding for students in the Honors College program.
School-Specific Scholarships: Various schools and colleges within YSU may offer scholarships specific to their academic disciplines. Students pursuing particular majors or fields of study should inquire about school-specific scholarship opportunities.
External Scholarships: YSU encourages international students to explore external scholarships offered by organizations, foundations, or home country governments. These external scholarships can help cover educational expenses.
Graduates with a Bachelor of Engineering (B.E.) in Manufacturing Engineering from Youngstown State University have diverse career opportunities in the manufacturing and engineering sectors. The program equips students with a solid foundation in manufacturing processes, systems, and technologies, preparing them for various roles in the industry.
Manufacturing Engineer: Manufacturing engineers design, develop, and optimize manufacturing processes and systems. They work to improve efficiency, reduce costs, and ensure high-quality production standards in various manufacturing settings.
Process Engineer: Process engineers focus on developing and optimizing production processes to enhance efficiency and quality. They work on improving existing processes, implementing new technologies, and solving problems related to production operations.
Quality Assurance Engineer: Quality assurance engineers ensure that products meet established quality standards and regulatory requirements. They develop and implement quality control procedures, conduct inspections, and analyze data to identify and address quality issues.
Production Manager: Production managers oversee the daily operations of manufacturing facilities. They are responsible for managing production schedules, coordinating with various departments, and ensuring that production goals are met while maintaining safety and efficiency.
Industrial Engineer: Industrial engineers focus on optimizing complex systems and processes in manufacturing environments. They analyze workflows, improve production methods, and implement cost-saving measures to enhance overall efficiency.
Automation Engineer: Automation engineers design and implement automated systems and equipment to improve manufacturing processes. They work on integrating robotics, control systems, and software to streamline production and increase productivity.
Supply Chain Analyst: Supply chain analysts manage and optimize the flow of materials and products through the supply chain. They analyze data, develop strategies to improve supply chain efficiency, and ensure that products are delivered on time and within budget.
Research and Development Engineer: R&D engineers work on developing new technologies, materials, and manufacturing techniques. They conduct research, design experiments, and collaborate with teams to innovate and improve manufacturing processes.
Consulting Engineer: Consulting engineers provide expertise and advice to companies on manufacturing-related projects and challenges. They offer solutions to improve manufacturing efficiency, implement new technologies, and address operational issues.