F0031200
2 Electromagnetism I
This course covers three main subjects: electrostatics, magnetostatics, and electromagnetics. Special attention is paid to
evaluation of capacitance and inductance. They are evaluated on the basis of electric and magnetic fields. This field concept
leads to a deep understanding of the fundamental laws of the electromagnetism, called Maxwell's equations.
In circuit theory, we studied capacitance and inductance on the basis of voltage and current. In electromagnetism, we further
study the capacitance and inductance on the basis of electric and magnetic fields. This field theory is indispensable for
understanding of electromagnetic waves that have enabled communication engineering.
- To acquire capacitance and inductance with the exercises.
- To acquire the procedure of obtaining capacitance: After knowing the electric fields from electric charges, we obtain electric
potential. The potential is directly proportional to the charges and its proportional constant is the reciprocal of capacitance.
- To acquire the procedure of obtaining inductance: After knowing the magnetic field from electric currents, we obtain magnetic
flux linkage. The flux is directly proportional to the currents and its proportional constant is inductance.
|
Class schedule |
HW assignments (Including preparation and review of the class.) |
Amount of Time Required |
| 1. |
Course outline and objectives |
References (1) and (2). |
190minutes |
| 2. |
Capacitance and inductance |
References (1) and (2). |
190minutes |
| 3. |
Procedure of obtaining capacitance |
Reference (2), pp.2-28 |
190minutes |
| 4. |
Electric field and potential (1) Field
|
Reference (2), pp.2-28 |
190minutes |
| 5. |
Electric field and potential (2) Potential (3) Field and conductors (4) Problem on capacitance
|
Reference (2), pp.30-60 |
190minutes |
| 6. |
Exercise on capacitance |
Reference (2), pp.138-143 |
190minutes |
| 7. |
Review of Sessions 2 to 6 |
References (1) and (2). |
190minutes |
| 8. |
Procedure of obtaining inductance |
Reference (2), pp.84-100 |
190minutes |
| 9. |
Magnetic field (1) Right-hand rule (2) Ampere's law (3) Straight-line curren
|
Reference (2), pp.40-42 |
190minutes |
| 10. |
Magnetic field (4) Infinite-solenoid current (5) Circular-solenoid current
|
Reference (2), pp.42-44 |
190minutes |
| 11. |
Inductance |
Reference (2), pp.84-100 |
190minutes |
| 12. |
Exercise on inductance |
Reference (2), pp.84-100 |
190minutes |
| 13. |
Faraday's law |
Reference (2), pp.101-130 |
190minutes |
| 14. |
Review of Sessions 8 to 14 |
References (1) and (2). |
190minutes |
| Total. |
- |
- |
2660minutes |
Relationship between 'Goals and Objectives' and 'Course Outcomes'
|
exercise |
midterm examination |
final examination |
Total. |
| 1. |
20% |
|
|
20% |
| 2. |
|
40% |
5% |
45% |
| 3. |
|
|
35% |
35% |
| Total. |
20% |
40% |
40% |
- |
Evaluation method and criteria
・Evaluation method
Exercise (20%), midterm examination (40%), and final examination (40%)
・criteria
a correct answer rate of more than 60% for the exercises in a reference of (2)
Textbooks and reference materials
References
(1)佐野 元昭:新・基礎 電磁気学、サイエンス社
(2)藤田 広一:電磁気学ノート、コロナ社
Office hours and How to contact professors for questions
- After the class (16:45-17:15)
Relation to the environment
Non-environment-related course
Non-regionally-oriented course
Development of social and professional independence
- Course that cultivates an ability for utilizing knowledge
More than one class is interactive
Course by professor with work experience
| Work experience |
Work experience and relevance to the course content if applicatable |
| Applicatable |
He worked for a company as an antenna engineer during the period 1984-1987. |
Last modified : Thu Mar 21 14:34:17 JST 2019