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The University Of Georgia
Program name: Electronic and Communication Engineering
Study Level: Undergraduate
Program leader: Kakhaber Tavzarashvili
Irakli Noselidze
Nodar Ugrelidze
Study language: Georgian
Qualification: Bachelor of Electrical Engineering
Program capacity: 180
Program permission: Foreign high-school graduates who received complete general education abroad or its equivalent and the last two years of complete general education had studied abroad or students who lived abroad for the last two or more years and who are currently studying abroad in higher educational institutions recognized by the legislation of the host countries will be able to enter the program without passing Uniform National Entrance Examinations according to Order №224/N of the Minister of Education and Science of Georgia (December 29, 2011).If the applicant does not have the English language certificates in FCE (First Certificate in English), he / she must pass the English language B2 level university test (60% positive assessment).
Program goals:

The aim of the program is to facilitate the development of electronic and communications engineering by prepare competent, highly qualified specialists who will have competitive higher education and skills in line with modern standards.

The undergraduate program is designed to provide the student with a thorough engineering skills in electronics, computer engineering, and communication. To give knowledge of modern standards in information technologies, design and implementation of systems and processes, compilation of simple software code, analysis of various engineering and mathematical tasks and innovative technological thinking, to develop teamwork skills with real experience in project implementation.

Graduates of the program will be able to be employed in Electronic, Computer, Telecommunications and Energy companies, Government organizations, Banks and other private companies where the competencies of an electronic engineering specialist are required. International certification courses integrated into the program provided by the school as additional offers, such as Cisco, Microsoft, Oracle Academic, iOS training courses, will give students the opportunity to receive international certificates.

Methods for Attaining Learning Outcomes:
  • Lecture - Seminar
  • Working with the book
  • Demonstration
  • Discussions
  • Practical lessons
  • Laboratory exercises
  • Interactive lessons
  • Team work
  • Problem solving and their solution
  • Verbal and oral method
  • Critical analysis
  • Problem-solving tasks
Learning outcomes:
Outcomes
  • The graduate will have an ability to:

    • identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics.
    • apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors.
    • communicate effectively with a range of audiences.
    • recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts.
    • function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives.
    • develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions.
    • acquire and apply new knowledge as needed, using appropriate learning strategies.
  • Date of approval: 01-01-1900
    Approval protocol number:
    Date of program update:
    Update protocol number:
    Program details:

    The student can be guided by the proposed curriculum and individually draw up his/her personal curriculum, taking into account the requirements of the subjects. To complete a bachelor's project in the last year of study, the student chooses a topic of thesis from the proposed areas. The bachelor's project is carried out in groups, which contributes to the development of filed knowledge and teamwork skills. The program provides for an optional course internship, which will help the student, if necessary, to better formulate himself when choosing a topic for a bachelor's project.

    Teaching Process Characteristics:

    In order to obtain a bachelor's degree, a student must complete 180 credits, which includes the following distribution of credits:

    • Program Electve 18 ECTS;
    • Program Core 150 ECTS;
    • STEM block 6 ECTS;
    • Humanitarian-Social block 6 ECTS.

     

    Humanitarian-Social Block

    Code Subject ECTS Semester
    COIN1515Comparative and International Education6 3,4
    HIST1230Introduction to the History of Georgia6 3,4
    LAWB1177Thinking and Morality6 3,4
    BUSN4433Economy, business, management6 3,4
    LITR1212The great Books6 3,4
    HIST1222History of Russian occupation in Georgia6 3,4
    POLI2260Basics of Political Ideologies6 3,4
    ANTH3130Basics of Cultural Anthropology6 3,4
    HIST1118Civilizations and Mankind Development6 3,4
    LAWB1195Citizenship in the modern world6 3,4
    MUSI00116 3,4

    Total ECTS to be taken:

    6

    STEM Block

    Code Subject ECTS Semester
    MATH1414Analytical and Quantitative Reasoning6 4
    STEM0003Experiments that changed the world6 4
    STEM0004Game theory6 4
    STEM0005Modern technologies6 4
    STEM0007Mathematics and Civilizations6 4
    STEM0010Logic6 4
    STEM0011Computational reasoning6 4
    STEM0012Biology and Health of the Human6 4
    STEM1009Great scientific experiments6 4

    Total ECTS to be taken:

    6

    Program Core

    Code Subject ECTS Semester
    EENG1111Programming for Engineers - Python6 1
    EENG1120Introduction to Electronics6 1
    ENGL25266 1
    MATH1115Calculus I6 1
    MATH1123Linear Algebra and Analytical Geometry6 1
    EENG11126 2
    EENG2424Circuit theory6 2
    KART1515Special Course in the Official Language6 2
    MATH1166Calculus II6 2
    PHYS2003Physics I6 2
    EENG2212Analog Electronics6 3
    INFO33016 3
    MATH3112Discrete Mathematics6 3
    PHYS2004Physics II6 3
    EENG2005Engineering Mathematics6 4
    EENG2008Modeling program tools6 4
    EENG3113Digital Electronics6 4
    EENG1002Neuronal systems6 5
    EENG2012Digital Communication6 5
    EENG2015Microcontrollers Programming6 5
    EENG21136 5
    MATH2004Probability and Statistics6 5
    EENG21126 6
    EENG4010Bachelor project12 6

    Total ECTS to be taken:

    150

    Program Elective

    Code Subject ECTS
    EENG1003Physics for Quantum Computing6
    EENG1213Semiconductor devices6
    EENG1215Signal Processing6
    EENG1216Amplifier6
    EENG1217Measuring Devices6
    EENG2115Communication technologies6
    EENG2116Radiofrequency Circuits and Systems6
    EENG2117Radiolocation and Radionavigation6
    EENG2118Radio-Tele Broadcasting Technologies6
    EENG3115Engineering Electromagnetics6
    EENG4012Practice6
    EENG4129Antenna theory and design6
    EENG4235Computer Security6
    INFO1107IT Services and Projects Management6
    INFO1111Introduction in Programming (C++)6
    INFO1112Office Systems6
    INFO3131Object Oriented Programming C++6
    INFO3210Computer Networks II6
    INFO33026
    INFO33036
    INFO33056
    INFO4114Artificial Intelligence6
    MATH4118Fundamentals of Cryptology6
    STEM4000Technical Writing6

    Total ECTS to be taken:

    12









    Matrix Of Privequisites


    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



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