Course

Electrical Engineering 1 (ELE100)

The objectives of this course are to give the students an introduction to fundamental subjects in electrical engineering.


Dette er emnebeskrivelsen for studieåret 2023-2024. Merk at det kan komme endringer.

See course description and exam/assesment information for this semester (2024-2025)

Semesters

Fakta

Emnekode

ELE100

Vekting (stp)

10

Semester undervisningsstart

Spring

Undervisningsspråk

Norwegian

Antall semestre

1

Vurderingssemester

Spring

Content

  • Fundamental electric terms: current, voltage, power, energy.
  • Fundamental laws of electric circuits, Ohm's law, Kirchoffs laws.
  • Resistive Circuits, series and parallel, voltage-divider, current-divider. Thevenin and Norton Equivalents. Superposition.
  • Capacitance and Inductance.
  • Introduction to electronic components and laboratory equipment. Oscilloscope, signal generator, multimeter.
  • Transients in systems of 1.order: RC- og RL-circuits, steady state analysis, differential equation, standard form, time constant, calculation and sketching of time response. Asymptotes.
  • Simulation and measurements of time 1. order time responses.
  • Steady-State Sinusoidal Analysis: Phasors and use of complex numbers for Impedances.
  • Frequency response of 1. order systems: Signals - a sum of frequency components, transfer function, magnitude, phase delay. RC- og RL-circuits, transfer function calculation. Sketching of Bode diagram. Asymptotes, deciBel. Generating transfer function in a simulator and based on measurements.
  • Diodes: Especially the use in Rectifier Circuits, Voltage Regulators and Power Electronics. Load-line analysis, Zener Diodes and Diode Models.

Learning outcome

  • Have a basic knowledge of electric circuits and parameters
  • Be able to do computations on electric circuits
  • Be able to do computations of energy and power for single phase
  • Perform computations on circuits with diodes (also zener diodes) such as rectifiers

Forkunnskapskrav

HSE-course for bachelor students (TN101)

Exam

Form of assessment Weight Duration Marks Aid Exam system Withdrawal deadline Exam date
Written exam 1/1 4 Hours Letter grades Valid calculator Inspera assessment


Vilkår for å gå opp til eksamen/vurdering

Approved laboratory exercises, , Approved laboratory exercises

Compulsory laboratory exercises: 8 Compulsory hand-in assignments: 5 out of 8

Completion of mandatory lab assignments are to be made at the times and in the groups that are assigned and published. Absence due to illness or for other reasons must be communicated as soon as possible to the laboratory personnel. One cannot expect that provisions for completion of the lab assignments at other times are made unless prior arrangements with the laboratory personnel have been agreed upon.

Failure to complete the assignments on time or not having them approved will result in barring from taking the exam of the course.

Fagperson(er)

Coordinator laboratory exercises:

Romuald Karol Bernacki

Head of Department:

Tom Ryen

Course coordinator:

Mahdieh Khanmohammadi

Method of work

Weekly 4-hour lecturing (at the campus), 2 hours guided problem-solving and 3 hours laboratory work through the semester. Each lab exercise consist of a theoretical pre-lab and 3 hours lab work. The pre-lab has to be carried out before the work in the lab can start. Mandatory work demands (such as hand in assignments, lab- assignments, projects, etc) must be approved by subject teacher three weeks ahead of examination date.

Overlapping

Emne Reduksjon (SP)
Electrical Engineering 1 (ELE100_1) , Alternative Current (TE0626_1) 5
Electrical Engineering 1 (ELE100_1) , Chemical engineering (TE0099_A) 2
Electrical Engineering 1 (ELE100_1) , Digital and Analog Electronic Circuits 1 (TE0622_A) 4
Electrical Technology for ME-students (BIM330_1) , Electrical Engineering 1 (ELE100_1) 2
Electrical technology (BIE280_1) , Electrical Engineering 1 (ELE100_1) 2
Electrical Engineering (BIE210_1) , Electrical Engineering 1 (ELE100_1) 10
Basic circuit and signal analysis (BIE220_1) , Electrical Engineering 1 (ELE100_1) 10

Åpent for

Battery and Energy Engineering - Bachelor in Engineering Civil Engineering - Bachelor in Engineering Computer Science - Bachelor in Engineering Computer Science - Bachelor in Engineering, Part-Time Electrical Engineering, Vocational Path - Bachelor's Degree Programme Electrical Engineering - Bachelor's Degree Programme, part-time Electrical Engineering - Bachelor's Degree Programme Energy and Petroleum Engineering - Bachelor in Engineering Geosciences and Energy Resources - Bachelor in Engineering Environmental Engineering - Bachelor in Engineering Mechanical Engineering - Bachelor in Engineering Medical technology - Bachelor in Engineering Medical Technology - Bachelor in Engineering - part time Petroleum Technology - Bachelor in Engineering
Admission to Single Courses at the Faculty of Science and Technology
Petroleum Engineering - Master of Science Degree Programme, Five Years Science and Technology - one-year programme

Emneevaluering

There must be an early dialogue between the course supervisor, the student union representative and the students. The purpose is feedback from the students for changes and adjustments in the course for the current semester.In addition, a digital subject evaluation must be carried out at least every three years. Its purpose is to gather the students experiences with the course.

Litteratur

Book Electrical engineering : principles and applications Hambley, Allan R., © 2019; New York :, Pearson Educaction, 890 sider :, [2019], isbn:978-1-292-22312-4-x; 1-292-22312-X, Følgende deler er pensum: Kap. 1: Introduksjon. (1.1, 1.2, 1.3, 1.4, 1.5, 1.6 og 1.7) Kap. 2: Resistive kretser. (2.1, 2.2, 2.3, 2.4 frem til «Circuits with Controlled sources» side 92, 2.6, 2.7 og 2.8). Kap. 3: Induktans og kapasitans. (3.1, 3.2, 3.3, 3.4, 3.5, 3.6 og 3.7). Kap. 4: Transienter (1.orden). (4.1, 4.2, 4.3). Kap. 5: Vekselstrøm. (5.1, 5.2, 5.3, 5.4, 5.5, 5.6). Kap. 6: Frekvensrespons (1.orden) (6.1, 6.2, 6.3, 6.4 og 6.5). Kap. 9: Dioder. (9.1, 9.2, 9.3, 9.4, 9.5 og 9.6). Appendix A: Komplekse tall. Website ElectronicsTutorials https://www.electronics-tutorials.ws/View online
The course description is retrieved from FS (Felles studentsystem). Version 1