Program name: | Electrical and Computer Engineering |
Study Level: | Undergraduate |
Program leader: | Kakhaber Tavzarashvili |
Study language: | Georgian |
Qualification: | Bachelor of Engineering |
Program capacity: | 240 |
Program permission: | Admission criteria/ prerequisite (for the citizens of Georgia): Admission criteria/ prerequisites (for the foreign country citizens): |
Program goals: | The program envisions fostering the field advancement by producing competitive, highly qualified specialists in Engineering, equipped with international standard and quality advanced education and skills based on the contemporary market trends. During the program students will acquire skills to design and realize electrical components, systems, or processes, write simple computer programs and analyze theoretical and numerical results of various engineering, physical and mathematical problems and foster innovation in the field. Graduates of the Engineering program can be employed by IT and telecommunication companies, Governmental organizations, banks and many private companies as electrical, telecommunication, radio and computer Engineers. |
Methods for Attaining Learning Outcomes: | Methods for achieving knowledge and understanding |
Learning outcomes: | Knowledge and understanding Know and understand mathematics, science and engineering principles; Skills Apply the knowledge of mathematics, science and engineering principles for solving problems; Responsibility and autonomy უწყვეტი პროფესიული განვითარებისკენ სწრაფვა, სპეციალობაში ცოდნისა და უნარების დამოუკიდებლად გაღრმავება, უფრო რთული ამოცანების გადაწყვეტისა და კომპლექსური სისტემების მართვის დამოუკიდებლად შესწავლა; |
Date of approval: | 12-03-2012 |
Approval protocol number: | 43-12 |
Date of program update: | 08-31-2016 |
Update protocol number: | 31/16 |
Program details: | After completing the core program (180 ECTS) the rest of credits (60 ECTS) student can choose from: one of the elective program concentrations (42 ECTS) and free credits; free credit from other program concentrations in accordance with preconditions or other English Language Programs. Program elective concentrations are: Engineering physics (42 ECTS) Telecommunications (42 ECTS) Computing (42 ECTS) |
Teaching Process Characteristics: | The length for undergraduate studies is defined as 4 years or 8 terms. University Study Day is divided in lectures (lessons).The lecture consists of several (two, three or four) parts (theoretical part, practical – seminar, lab), each of length - 60 minutes. At the University groups (classes) are formed as from 25 or 50 students. The minimum number of students per group is 10. If during the registration less than 10 students registered, the University reserves the right not to open the group. |
Code | Subject | ECTS | Semester |
ENGL2217 | English language IV (B1/2) | 6 | 1 |
ENGL3149 | English Language V (B2/1) | 6 | 2 |
ENGL3213 | English Language VI (B2/2) | 6 | 3 |
KART1220 | Academic Writing | 6 | 4 |
BUSN1210 | Basics of Business and Economics | 6 | 5 |
HIST1118 | Civilizations and Mankind Development | 6 | 6 |
Credits sum: | 36 |
Code | Subject | ECTS | Semester |
EENG1120 | Introduction to Electronics | 6 | 1 |
INFO1111 | Introduction in Programming (C++) | 6 | 1 |
MATH1115 | Calculus I | 6 | 1 |
MATH1123 | Linear Algebra and Analytical Geometry | 6 | 1 |
EENG1104 | Mechanics | 6 | 2 |
EENG2213 | Fundamentals of Computer Engineering | 6 | 2 |
INFO3131 | Object Oriented Programming C++ | 6 | 2 |
MATH1166 | Calculus II | 6 | 2 |
EENG1205 | Electricity and Magnetism | 6 | 3 |
EENG2101 | Engineering Mathematics I | 6 | 3 |
EENG2110 | Circuit Analysis | 6 | 3 |
EENG2210 | General Chemistry Fundamentals | 6 | 3 |
EENG2108 | Thermodynamics, waves and optics | 6 | 4 |
EENG2202 | Engineering Mathematics II | 6 | 4 |
EENG2212 | Analog Electronics | 6 | 4 |
EENG3113 | Digital Electronics | 6 | 5 |
EENG3115 | Engineering Electromagnetics | 6 | 5 |
INFO2411 | Computer Architecture | 6 | 5 |
EENG2211 | Semiconductor Fundamentals | 6 | 6 |
EENG3220 | LabView Programming | 6 | 6 |
INFO3110 | Computer Network I | 6 | 6 |
EENG3116 | Introduction to Signals and Systems | 6 | 7 |
EENG3216 | Microprocessors | 6 | 7 |
EENG4129 | Antenna theory and design | 6 | 7 |
Credits sum: | 144 |
Code | Subject | ECTS | |
INFO4259 | Data Structures and Algorithms | 6 | |
ENGL2147 | English Language III (B1/1) | 6 | |
INFO3267 | Introduction in Technology | 12 | |
MATH3238 | Introduction in Mathematics | 12 | |
MATH4118 | Fundamentals of Cryptology | 6 | |
INFO1112 | Office Systems | 6 | |
MATH3112 | Discrete Mathematics | 6 | |
EENG1220 | electrical power engineering | 6 | |
EENG1221 | Electrotechnical Materials | 6 | |
EENG2512 | Labor Safety | 6 | |
EENG3217 | Modern Physics | 6 | |
EENG3218 | System Modeling and Control | 6 | |
EENG3221 | Microwave Circuit and System Design | 6 | |
EENG4235 | Computer Security | 6 | |
INFO3010 | Introduction to Blockchain technology | 6 | |
EENG3222 | Software Engineering | 6 | |
EENG4012 | Practice | 6 | |
EENG4124 | Electromagnetic Compatibility | 6 | |
EENG4128 | Telecommunication Systems | 6 | |
EENG4134 | Modern Operating Systems | 6 | |
INFO3210 | Computer Networks II | 6 | |
EENG4010 | Bachelor project | 12 | |
EENG4011 | Bachelor thesis | 12 | |
Credits sum: | 162 |
Code | Subject | ECTS | |
ENGL1147 | English Language I (A1) | 6 | |
MATH1121 | Precalculus | 6 | |
ENGL1247 | English Language II (A2) | 6 | |
ENGL2147 | English Language III (B1/1) | 6 | |
Credits sum: | 24 |
Point | GPA | The university assessment | The general assessment in Georgia | |
97-100 | 4,00 | A+ | A | Excellent |
94-96 | 3,75 | A | ||
91-93 | 3,50 | A- | ||
87-90 | 3,25 | B+ | Very good | |
84-86 | 3,00 | B | B | |
81-83 | 2,75 | B- | ||
77-80 | 2,50 | C+ | C | good |
74-76 | 2,25 | C | ||
71-73 | 2,00 | C- | ||
67-70 | 1,75 | D+ | D | Satisfactory |
64-66 | 1,50 | D | ||
61-63 | 1,25 | D- | ||
51-60 | 1,00 | E | E | Sufficient |
Not passed | ||||
41-50 | FX | FX | Insufficient | |
<40 | F | F | Failed |