DAD101 DC Circuit Analysis

5 ECTS - 3-1 Duration (T+A)- 1. Semester- 3.5 National Credit

Information

Unit ADANA VOCATIONAL SCHOOL
Code DAD101
Name DC Circuit Analysis
Term 2021-2022 Academic Year
Semester 1. Semester
Duration (T+A) 3-1 (T-A) (17 Week)
ECTS 5 ECTS
National Credit 3.5 National Credit
Teaching Language Türkçe
Level Ön Lisans Dersi
Type Normal
Label C Compulsory
Mode of study Yüz Yüze Öğretim
Catalog Information Coordinator Öğr. Gör. AHMET KARAKUŞ
Course Instructor Öğr. Gör. AHMET KARAKUŞ (Güz) (A Group) (Ins. in Charge)


Course Goal / Objective

To provide student obtain basic theorems and concepts about direct current and learn solution methods of direct current circuits

Course Content

Current-voltage concepts, DC circuits components, Power and energy, serial, parallel, serial-parallel circuits in direct current, Kirschoff's voltage and current laws, to solve DC circuits using Thevenen, Norton, Superposition theorems, Maximum power theorem, energy storage components in DC.

Course Precondition

Resources

Notes



Course Learning Outcomes

Order Course Learning Outcomes
LO01 Define static electric, knows the effects and protection methods
LO02 Solve serial, parallel and serial-parallel circuits in DC, explain Kirchoff Laws and uses in circuits
LO03 Explain current and voltage sources and solves circuits using source transformations
LO04 Solve circuits with loop current and node voltage methods
LO05 Make circuit analysis with Thevenen, Norton and super position Theorems
LO06 Explain energy storage components in DC, solve circuits including capacitor and coil
LO07 Explain electro-magnetism and electromagnetic induction and calculate the requirements
LO08 Explain transient events in direct current and calculate requirements


Relation with Program Learning Outcome

Order Type Program Learning Outcomes Level
PLO01 Bilgi - Kuramsal, Olgusal To have basic, up-to-date and practical knowledge about Electronic Technologies.
PLO02 Bilgi - Kuramsal, Olgusal Have knowledge about occupational health and safety, environmental awareness and quality processes.
PLO03 Beceriler - Bilişsel, Uygulamalı Follows current developments and applications for electronic technologies and uses them effectively
PLO04 Beceriler - Bilişsel, Uygulamalı Uses information technologies (software, program, animation, etc.) related to electronic technologies effectively.
PLO05 Beceriler - Bilişsel, Uygulamalı To be able to independently solve problems and issues related to electronic technologies with an analytical and critical approach has the ability to evaluate and propose solutions.
PLO06 Yetkinlikler - İletişim ve Sosyal Yetkinlik To be able to effectively present his/her thoughts at the level of knowledge and skills through written and oral communication and express them clearly.
PLO07 Yetkinlikler - Alana Özgü Yetkinlik Solving complex and unpredictable problems encountered in electronics-related applications takes responsibility as a team member.
PLO08 Yetkinlikler - Öğrenme Yetkinliği Has an awareness of career management and lifelong learning.
PLO09 Yetkinlikler - Bağımsız Çalışabilme ve Sorumluluk Alabilme Yetkinliği To have social, scientific, cultural and ethical values in the stages of collecting, implementing and announcing the results of data related to electronics.
PLO10 Yetkinlikler - İletişim ve Sosyal Yetkinlik Bir yabancı dili kullanarak Elektronik Teknolojileri ile ilgili bilgileri takip eder ve meslektaşları ile iletişim kurar
PLO11 Beceriler - Bilişsel, Uygulamalı It detects malfunctions that may occur in electronic devices and eliminates malfunctions.
PLO12 Beceriler - Bilişsel, Uygulamalı Develops programmes and applications by designing systems with microcontroller and PLC.
PLO13 Bilgi - Kuramsal, Olgusal Analyzes electrical-electronic circuits. 5
PLO14 Beceriler - Bilişsel, Uygulamalı Develops applications by designing programmes with electric motors and drive systems.
PLO15 Bilgi - Kuramsal, Olgusal Explains the operation of basic analogue and digital electronic circuits.
PLO16 Bilgi - Kuramsal, Olgusal To have basic theoretical knowledge about mathematics, science and electronics. 4


Week Plan

Week Topic Preparation Methods
1 Static Electricity Getting information from source books
2 Static Electricity, Take Precaution Against Effects of Electric Current Contingency Review of previous course notes and getting information from source books
3 Take Precaution Against Effects of Electric Current Contingency, Direct Current Circuit Solutions Review of previous course notes and getting information from source books
4 Direct Current Circuit Solutions, Mesh Current Method Review of previous course notes and getting information from source books
5 Mesh Current Method Review of previous course notes and getting information from source books
6 Node Voltage Method Review of previous course notes and getting information from source books
7 Source Combinations, Thevenin's Theorem Review of previous course notes and getting information from source books
8 Mid-Term Exam
9 Thevenin's Theorem, Norton's Theorem Review of previous course notes and getting information from source books
10 Superposition Theorem, Maximum Power Transfer Theorem Review of previous course notes and getting information from source books
11 Maximum Power Transfer Theorem, Storage Elements in Direct Current Review of previous course notes and getting information from source books
12 Storage Elements in Direct Current Review of previous course notes and getting information from source books
13 Storage Elements in Direct Current, Power and Energy in Direct Current Review of previous course notes and getting information from source books
14 Power and Energy in Direct Current Review of previous course notes and getting information from source books
15 Direct Current Power and Energy Circuit Solutions Review of previous course notes and getting information from source books
16 Term Exams
17 Term Exams


Assessment (Exam) Methods and Criteria

Assessment Type Midterm / Year Impact End of Term / End of Year Impact
1. Midterm Exam 100 40
General Assessment
Midterm / Year Total 100 40
1. Final Exam - 60
Grand Total - 100


Student Workload - ECTS

Works Number Time (Hour) Workload (Hour)
Course Related Works
Class Time (Exam weeks are excluded) 14 4 56
Out of Class Study (Preliminary Work, Practice) 14 3 42
Assesment Related Works
Homeworks, Projects, Others 1 1 1
Mid-term Exams (Written, Oral, etc.) 1 8 8
Final Exam 1 16 16
Total Workload (Hour) 123
Total Workload / 25 (h) 4,92
ECTS 5 ECTS

Update Time: 25.03.2024 01:51