Description of Individual Course Units
Course Unit CodeCourse Unit TitleType of Course UnitYear of StudySemesterNumber of ECTS Credits
EHP10520099116D.C CIRCUIT ANALYSISCompulsory115
Level of Course Unit
Short Cycle
Objectives of the Course
• The aim of the course is the definition of basic electronic elements, electronic resources, and basic electronic principles and theorems
Name of Lecturer(s)
Mustafa MUTLU
Learning Outcomes
1Resistance, current and voltage knows, given the size of a circuit that calculates.
2Serial, Parallel and Serial-Parallel Circuit analysis does, the circuit knows the law of Kirchhoff's laws apply.
3
Mode of Delivery
Formal Education
Prerequisites and co-requisities
None
Recommended Optional Programme Components
Week 1 Atomic structure and the electrical load. Conductors, insulators and semiconductors, the atomic structure of materials incelenmesi.Doğru current, alternating current disclosure. Electrical potential difference. Power and energy Week 2 RESISTANCE Presence of a conductor's resistance. Conductivity, resistance to the concepts of self-disclosure. Examination of resistance with temperature change. Week 3 Batteries and accumulators. Ohm's law. Series circuits. Series circuits have an equivalent resistance. Series circuits, power and energy. Voltage dividers. Parallel circuits. Finding the equivalent resistance in parallel circuits. Parallel circuits, power and energy. Circuit types Week 4 Mixed Serial-Parallel circuits Week 5 Mixed Serial-Parallel circuits Week 6 Source transformation method. Voltage source current into the source. Power supply voltage source circuits using dönüştürülmesi.Kaynak transformations. Week 7 CIRCUIT SOLUTION METHODS Super Position (additivity rule) Theorem. Super position theorem solved by using the circuits Week 8 midterm Week 9 Thevenin's Theorem. Solve circuits using Thevenin's theorem Week 10 Norton's Theorem. Solve circuits using Norton's theorem Week 11 Environmental flows method. Two more eyes and solve the circuit Week 12 Examination of the behavior of DC circuits, circuit elements Week 13 Serial and parallel connection of capacitors. Week 14 power and energy Week 15 power and energy Week 16 final exam
Course Contents
• Resistance, Current, Voltage and Ohm's Law Definitions Serial, Parallel and Serial-Parallel Circuits, and Solutions, Kirchhoff's Laws, Current and Voltage Sources, Source Transformation, Environmental Flows Method and circuit analysis Joint Method and Circuit Analysis Thevenin's and Norton's theorems and Circuit Analysis Circuit Solution by Superposition Theorem Circuit with Mixed Problem Solutions Solution Methods and Circuit Theorems Capacitors, Coils Electro Magnetism, and Electro-Magnetic Induction, Direct Current Temporary Events
Weekly Detailed Course Contents
WeekTheoreticalPracticeLaboratory
1Atomic structure and the electrical load. Conductors, insulators and semiconductors, the atomic structure of materials incelenmesi.direct current, alternating current disclosure. Electrical potential difference. Power and energy
2RESISTANCE Presence of a conductor's resistance. Conductivity, resistance to the concepts of self-disclosure. Examination of resistance with temperature change.
3Batteries and accumulators. Ohm's law. Series circuits. Series circuits have an equivalent resistance. Series circuits, power and energy. Voltage dividers. Parallel circuits. Finding the equivalent resistance in parallel circuits. Parallel circuits, power and energy. Circuit types
4Mixed Serial-Parallel circuits
5Mixed Serial-Parallel circuits
6Source transformation method. Voltage source current into the source. Power supply voltage source circuits using dönüştürülmesi.Kaynak transformations.
7CIRCUIT SOLUTION METHODS Super Position (additivity rule) Theorem. Super position theorem solved by using the circuits
8Thevenin's Theorem. Solve circuits using Thevenin's theorem
9midterm
10Norton's Theorem. Solve circuits using Norton's theorem
11Environmental flows method. Two more eyes and solve the circuit
12Examination of the behavior of DC circuits, circuit elements
13Serial and parallel connection of capacitors.
14power and energy
15power and energy
16final exam
Recommended or Required Reading
Planned Learning Activities and Teaching Methods
Assessment Methods and Criteria
Term (or Year) Learning ActivitiesQuantityWeight
SUM0
End Of Term (or Year) Learning ActivitiesQuantityWeight
SUM0
Yarıyıl (Yıl) İçi Etkinlikleri40
Yarıyıl (Yıl) Sonu Etkinlikleri60
SUM100
Language of Instruction
Turkish
Work Placement(s)
Workload Calculation
ActivitiesNumberTime (hours)Total Work Load (hours)
Midterm Examination111
Final Examination111
Attending Lectures14456
Practice428
Report Preparation111
Report Presentation111
Self Study21224
Individual Study for Homework Problems428
Individual Study for Mid term Examination21224
Individual Study for Final Examination2612
Report111
TOTAL WORKLOAD (hours)137
Contribution of Learning Outcomes to Programme Outcomes
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* Contribution Level : 1 Very low 2 Low 3 Medium 4 High 5 Very High
 
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