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Basics of Electric Circuits

EE2201
4 hours English

Basics of Electric Circuits

Basics of Electric Circuits
1 Basic Concepts
2 Resistive Circuits
3 Nodal & Loop Analysis
4 Superposition and Source Transformation Techniques
5 Thevenin’s and Norton’s Theorems
6 Maximum Power Transfer
7 Capacitance and Inductance
8 Analyze AC Steady-State circuits
1.1 Mapped to: KLO1

Students will be able to explain the concept of electric charge, current, voltage, energy, and power.

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
1.2 Mapped to: KLO5

Students will be able to analyze linear DC circuits using Ohm’s Law, Kirchhoff’s voltage law (mesh analysis), and Kirchhoff’s current law (nodal analysis).

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
1.3 Mapped to: KLO1

Students will be able to utilize network analysis techniques including superposition, source transformations, and Thevenin & Norton’s theorems.

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
1.4 Mapped to: KLO5

Students will be able to explain the terminal characteristics of capacitors and inductors.

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
1.5 Mapped to: KLO1

Students will be able to explain and analyze AC Steady-State circuits

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
2.1 Mapped to: KLO 3, 4, 8

Analyze linear DC circuits using Ohm’s Law, Kirchhoff’s voltage law (mesh analysis), and Kirchhoff’s current law (nodal analysis).

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
2.2 Mapped to: KLO 3, 4, 8

Utilize network analysis techniques including superposition, source transformations, and Thevenin & Norton’s theorems

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
2.3 Mapped to: KLO 3, 4, 8

Analyze DC circuits containing dependent and independent sources, resistors, capacitors, and inductors

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
2.4 Mapped to: KLO 3, 4, 8

Analyze AC Steady-State circuits

Teaching Strategy Traditional lecture
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
3.1 Mapped to: KLO 6

Demonstrate the importance of and engage in Life-long learning

Teaching Strategy Classroom Participation
Assessment Methods Quizzes + Final Exam Questions + HW Assignments + Major Exam Questions
3.2 Mapped to: KLO 6

Conduct professionally and responsibly

Teaching Strategy Classroom Participation
Assessment Methods Discussions
3.3 Mapped to: KLO 6

Communicate in written form

Teaching Strategy Classroom Participation
Assessment Methods Discussions
3.4 Mapped to: KLO 6

Handle tools and materials and apply rules for equipment & personal safety

Teaching Strategy Lab Experiments
Assessment Methods laboratory experiments, Lab reports, and final lab exam