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B.Tech in Semiconductor Materials and Devices Engineering

Course Level: Bachelor's
Course Duration: 4 Years
Course Language English
Required Degree Class 12th

Why Choose B.Tech in Semiconductor Materials and Devices Engineering at Ulsan National Institute of Science & Technology, South Korea

Choosing B.Tech in Semiconductor Materials and Devices Engineering at Ulsan National Institute of Science & Technology (UNIST) offers students a unique opportunity to study at one of South Korea's leading institutions for cutting-edge research and innovation. UNIST provides a strong curriculum that integrates theory with hands-on experience, preparing students for the rapidly advancing semiconductor industry. The program emphasizes the development of advanced materials and devices, equipping graduates with skills highly sought after by global tech companies. Additionally, the university's state-of-the-art facilities and proximity to major tech hubs ensure excellent career prospects for its graduates.


B.Tech in Semiconductor Materials and Devices Engineering at Ulsan National Institute of Science & Technology, South Korea, Program Details
 

Aspect

Details

Program Name

B.Tech in Semiconductor Materials and Devices Engineering

Degree Awarded

Bachelor of Technology (B.Tech) in Semiconductor Materials and Devices Engineering

Course Duration

4 Years

Language of Instruction

English

Yearly Tuition Fees

Approximately KRW 7,000,000 - 8,000,000 (~ USD 5,500 - 6,300)

Total Tuition Fees

Approximately KRW 28,000,000 - 32,000,000 (~ USD 22,000 - 25,000) for 4 years

Total Program Cost

Includes tuition fees, accommodation, living expenses (~ USD 35,000 - 40,000 for 4 years)

Eligibility

High school diploma or equivalent; strong background in mathematics and physics

Admission Requirements

Academic transcripts, standardized test scores (e.g., SAT, ACT), proof of English proficiency (TOEFL/IELTS), recommendation letters

Application Intake

Typically two intakes: Spring (March) and Fall (September)

Scholarships

Available for outstanding students, including merit-based scholarships and financial aid options

Career Prospects

Graduates can work in semiconductor manufacturing, research and development, electronics, and tech industries worldwide

Curriculum Structure

 Core courses in semiconductor physics, material science, and device fabrication
 Laboratory-based learning, research opportunities
 Electives in specialized topics like nanoelectronics, quantum devices, and integrated circuits