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Year/Semester of Study | 1 / Fall Semester | ||||
Level of Course | Short Cycle Degree Programme | ||||
Type of Course | Compulsory | ||||
Department | CONTROL AND AUTOMATION | ||||
Pre-requisities and Co-requisites | None | ||||
Mode of Delivery | Face to Face | ||||
Teaching Period | 14 Weeks | ||||
Name of Lecturer | YUNUS KARA (yunuskara@nevsehir.edu.tr) | ||||
Name of Lecturer(s) | TAHİR KARAKOÇ, YUNUS KARA, | ||||
Language of Instruction | Turkish | ||||
Work Placement(s) | None | ||||
Objectives of the Course | |||||
The aim of this course is to acquire the competencies of applying the principles of electric current and making solutions of all direct current electric circuits. |
Learning Outcomes | PO | MME | |
The students who succeeded in this course: | |||
LO-1 | Can know the basic concepts of electricity. |
PO-10 Knows the basic electrical concepts. Circuit solutions related to electrical circuits are realized. PO-11 Makes necessary measurements on electrical-electronic circuits and components. |
Examination |
LO-2 | Can make basic circuit solutions. |
PO-10 Knows the basic electrical concepts. Circuit solutions related to electrical circuits are realized. PO-11 Makes necessary measurements on electrical-electronic circuits and components. PO-13 Analyzes a system, system component or process in the field of energy and applies modern design methods to meet the desired needs when necessary. |
Examination Presentation |
LO-3 | Can make complex electrical circuit solutions. |
PO-10 Knows the basic electrical concepts. Circuit solutions related to electrical circuits are realized. PO-11 Makes necessary measurements on electrical-electronic circuits and components. PO-13 Analyzes a system, system component or process in the field of energy and applies modern design methods to meet the desired needs when necessary. |
Examination Presentation |
LO-4 | Can calculate the effects of direct current on the circuit elements. |
PO-10 Knows the basic electrical concepts. Circuit solutions related to electrical circuits are realized. PO-11 Makes necessary measurements on electrical-electronic circuits and components. PO-13 Analyzes a system, system component or process in the field of energy and applies modern design methods to meet the desired needs when necessary. |
Examination Laboratory Exam Presentation |
PO: Programme Outcomes MME:Method of measurement & Evaluation |
Course Contents | ||
Resistance, Ohm's Law, Power, Series Circuits And Kirchoff's Voltage Law, Parallel Circuits And Kirchoff's Voltage Law, Series Parallel (Mixed) Circuits, Power Supplies, Circuit Solution Methods, Circuit Theorems, Capacitors, Direct Current Transient Analysis, Tests related to the subject. | ||
Weekly Course Content | ||
Week | Subject | Learning Activities and Teaching Methods |
1 | Static Electricity | Description Method |
2 | Static Electricity, Taking Precautions Against Unforeseeable Effects of Electric Current. | Description Method |
3 | Ohm's Law and Kirchoff's Laws, Direct Current Circuit Solutions. | Description Method Problem-Solving Method Experimentation |
4 | Equivalent circuit and equivalent circuit resistance calculation. | Description Method Problem-Solving Method |
5 | Direct Current Circuit Solutions, loop current method. | Description Method Problem-Solving Method |
6 | Loop current method | Description Method Problem-Solving Method |
7 | Node voltage method | Description Method Problem-Solving Method Experimentation |
8 | mid-term exam | |
9 | Resource Connections, Thevenin Theorem | Description Method Problem-Solving Method |
10 | Thevenin Theorem, Norton Theorem | Description Method Problem-Solving Method |
11 | Superposition theorem | Description Method Problem-Solving Method |
12 | Star-delta transformation | Description Method Problem-Solving Method |
13 | Direct Current Storage Elements | Description Method Problem-Solving Method |
14 | Direct Current Storage Elements | Description Method Problem-Solving Method |
15 | Power and Energy in Direct Current | Description Method Problem-Solving Method Experimentation |
16 | final exam | |
Recommend Course Book / Supplementary Book/Reading | ||
1 | Nahvi, M., ve diğ., (2014) Schaum's serisi elektrik devreleri: electric circuits. Nobel Akademik Yayıncılık. | |
2 | Ceylan, M.,(2013), Doğru akım devreleri: Doğru akım devre analizi. Seçkin Yayıncılık. | |
3 | Karakoç, T., (2019,Doğru akım devre analizi, Seçkin Yayıncılık. | |
Required Course instruments and materials | ||
DC Power Supply, Signal Generators, Oscilloscopes, Multimeters, Electronic Circuit Components |
Assessment Methods | |||
Type of Assessment | Week | Hours | Weight(%) |
mid-term exam | 8 | 1 | 40 |
Other assessment methods | |||
1.Oral Examination | |||
2.Quiz | |||
3.Laboratory exam | |||
4.Presentation | |||
5.Report | |||
6.Workshop | |||
7.Performance Project | |||
8.Term Paper | |||
9.Project | |||
final exam | 16 | 1 | 60 |
Student Work Load | |||
Type of Work | Weekly Hours | Number of Weeks | Work Load |
Weekly Course Hours (Theoretical+Practice) | 4 | 14 | 56 |
Outside Class | |||
a) Reading | 0 | ||
b) Search in internet/Library | 1 | 10 | 10 |
c) Performance Project | 0 | ||
d) Prepare a workshop/Presentation/Report | 4 | 10 | 40 |
e) Term paper/Project | 0 | ||
Oral Examination | 0 | ||
Quiz | 0 | ||
Laboratory exam | 0 | ||
Own study for mid-term exam | 4 | 2 | 8 |
mid-term exam | 1 | 1 | 1 |
Own study for final exam | 4 | 2 | 8 |
final exam | 1 | 1 | 1 |
0 | |||
0 | |||
Total work load; | 124 |