Course
BME1110752 / BME1210752
PHYSICS II
Biomedical Engineering
- LECTURE
- 3
- LAB
- 0
- CREDITS
- 3
- ECTS
- 5
REQUIRES
REQUIRED BY
TAUGHT IN
AIM
The aim of the course is to provide students with theoretical knowledge on basic electricity and magnetism and to understand the universe and engineering applications in the most effective way with this theoretical structure.
CONTENT
This course contains; Electric charge and electric field,Gauss’ law,Electric potential,Capacitance and dielectrics ,Current, resistance, and electromotive force,Direct current circuits,Magnetic field and magnetic forces,Sources of magnetic field,Electromagnetic induction,Inductance I,Inductance II,Alternating current,Electromagnetic waves I,Electromagnetic waves II.
LEARNING OUTCOMES
- 1
1. Students know the basic laws of electricity and magnetism and uses them in problem solving.
Taught by: Discussion Method, Problem Solving Method, Self Study Method, Experiential Learning, Lecture Method · Assessed by: Multiple-Choice Exam
- 2
2. Students have knowledge about electrostatic, capacitance and dielectric, direct current circuits and elements, electromotive force.
Taught by: Discussion Method, Problem Solving Method, Self Study Method, Experiential Learning, Lecture Method · Assessed by: Multiple-Choice Exam
- 3
3. Students gain knowledge about basic magnetism, electromagnetic induction, inductance, alternating current and electromagnetic waves.
Taught by: Discussion Method, Problem Solving Method, Self Study Method, Experiential Learning, Lecture Method · Assessed by: Multiple-Choice Exam
- 4
4. Students gain the ability to apply mathematical knowledge in problem solving.
Taught by: Discussion Method, Problem Solving Method, Self Study Method, Experiential Learning, Lecture Method · Assessed by: Multiple-Choice Exam
- 5
5. Students can model problems, interpret, evaluate and analyze data using basic theoretical knowledge on electricity and magnetism.
Taught by: Discussion Method, Problem Solving Method, Self Study Method, Lecture Method · Assessed by: Multiple-Choice Exam
WEEKLY PLAN
- WEEK 1
Electric charge and electric field
- WEEK 2
Gauss’ law
- WEEK 3
Electric potential
- WEEK 4
Capacitance and dielectrics
- WEEK 5
Current, resistance, and electromotive force
- WEEK 6
Direct current circuits
- WEEK 7
Magnetic field and magnetic forces
- WEEK 8
Sources of magnetic field
- WEEK 9
Electromagnetic induction
- WEEK 10
Inductance I
- WEEK 11
Inductance II
- WEEK 12
Alternating current
- WEEK 13
Electromagnetic waves I
- WEEK 14
Electromagnetic waves II
ASSESSMENT
- Rate of Midterm Exam to Success30%
- Rate of Final Exam to Success70%
READING
- Serway R.A, Jewett, Jr J.W. Physics for Scientists and Engineers with Modern Physics. Brooks Cole, 9th Edition Young H.D, Freedman R.A. Sears and Zemansky’s University Physics with Modern Physics. Pearson, 13th Edition
TEACHING STAFF
- Assist.Prof. Sultan YILDIZCOORDINATOR
- Assist.Prof. Sultan YILDIZ
- Lect.Dr. Tuna PESEN İNANÇ