BAYBURT University Information Package / Course Catalogue

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Description of Individual Course Units
Course Unit CodeCourse Unit TitleType of Course UnitYear of StudySemesterNumber of ECTS Credits
E112B3Alternating Current CircuitsCompulsory124
Level of Course Unit
Short Cycle
Objectives of the Course
Recognized for understanding about concepts and theorems concerning electrical circuits and ability about the analysis of the alternating current circuits in an effective way.
Name of Lecturer(s)
Dr. Öğr. Üyesi Ahmet TEBER
Learning Outcomes
1Learn fundamental of electrical circuits and gain the ability to apply this knowledge towards circuit design
2Gain the ability of problem solving towards the methods of circuit solution
3Gain the ability to apply the methods for the applications of direct current circuits
4Gain the ability to understand transient analysis of electrical circuits
5Cognition of alternating current and Gain the ability to utilize Ltspice program in circuit solutions
6Gain the ability to know and improve circuit design skills and have experimental investigation of the direct current circuits
Mode of Delivery
Normal Education
Prerequisites and co-requisities
None
Recommended Optional Programme Components
None
Course Contents
Basic AC circuits, Complex numbers, AC circuit solutions, RC-RL and RLC circuits, voltage and current divider structures, superposition theorem, circumferential currents and node voltages, Thevenin and Norton theorems, three-phase systems and resonance circuits
Weekly Detailed Course Contents
WeekTheoreticalPracticeLaboratory
1Complex numbersOperations with complex numbersNone
2Alternating Current concept and detailed featuresAlternating current and voltage studiesNone
3Capacitive ReaktanceCapacitive reactance in complex formNone
4Inductive ReaktanceInductive reactance in complex formNone
5Series R L C CircuitsRLC circuit applicationsNone
6Parallel R L C CircuitsParallel RLC circuit applicationsNone
7Mix R L C CircuitsComplex RLC circuit applicationsNone
8Midterm ExamNoneNone
9Superposition TheoremApplications of the Superposition TheoremNone
10Mesh Analysis TheoremMesh Analysis Method applicationsNone
11Node Voltages TheoremNode Voltage Method applicationsNone
12Norton’s TheoremNorton Theorem applicationsNone
13Thevenin’s TheoremApplications of Thevenin TheoremNone
14Rezonance CircuitsResonant Circuits applicationsNone
15Three Phase SystemsThree-phase AC systems applicationsNone
16Final ExamNoneNone
Recommended or Required Reading
1. Elektrik Devrelerinin Temelleri, (Çeviren: Doç. Dr. Uğur Savaş Selamoğulları) Palme Yayınevi 2. Fundamentals of Electrıcal Circuits, 4th Edition, McGraw Hill (Charles K. Alexander ve Matthew N.O. Sadiku)
Planned Learning Activities and Teaching Methods
Assessment Methods and Criteria
Term (or Year) Learning ActivitiesQuantityWeight
Midterm Examination1100
SUM100
End Of Term (or Year) Learning ActivitiesQuantityWeight
Final Examination1100
SUM100
Term (or Year) Learning Activities40
End Of Term (or Year) Learning Activities60
SUM100
Language of Instruction
Turkish
Work Placement(s)
None
Workload Calculation
ActivitiesNumberTime (hours)Total Work Load (hours)
Midterm Examination111
Final Examination122
Makeup Examination122
Attending Lectures14114
Practice14114
Problem Solving14114
Question-Answer14114
Individual Study for Mid term Examination7321
Individual Study for Final Examination12828
TOTAL WORKLOAD (hours)110
Contribution of Learning Outcomes to Programme Outcomes
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LO1522154322242235222235
LO2522154122141115213235
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LO5522154322141335213235
LO6533154121141135211235
* Contribution Level : 1 Very low 2 Low 3 Medium 4 High 5 Very High