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Physics II

Code: L.EA010     Acronym: F II

Keywords
Classification Keyword
OFICIAL Physical Sciences (Physics)

Instance: 2023/2024 - 1S Ícone do Moodle

Active? Yes
Web Page: https://villate.org/eletromagnetismo
Responsible unit: Department of Engineering Physics
Course/CS Responsible: Bachelor in Environmental Engineering

Cycles of Study/Courses

Acronym No. of Students Study Plan Curricular Years Credits UCN Credits ECTS Contact hours Total Time
L.EA 39 Syllabus 2 - 6 52 162
L.EMG 16 Plano de estudos oficial a partir de 2008/09 2 - 6 52 162
Mais informaçõesLast updated on 2023-09-08.

Fields changed: Objectives, Resultados de aprendizagem e competências, Programa, Fórmula de cálculo da classificação final, Obtenção de frequência, Métodos de ensino e atividades de aprendizagem

Teaching language

Suitable for English-speaking students

Objectives

To learn the basics of Electromagnetism, Electrical Circuits and Geometrical Optics.
To develop physical reasoning skills.
To improve on problem-solving methods.
To get acquainted with the use of electrical measuring devices.

Learning outcomes and competences

Students who approve this course are expected to be able to:
Describe eletromagnetic phenomena.
Analize direct-current and alternating-current circuits.
Conduct measurements in electrical circuits.
Analize optical instruments with lenses and mirrors.
Describe the electromagnetic spectrum and the properties of light.

Working method

Presencial

Pre-requirements (prior knowledge) and co-requirements (common knowledge)

Some previous knowledge of Caculus I and II (differential, integral and vector calculus; differential equations), Linear Algebra (vectors and matrices) and Physics I (mechanics).

Program

Electric force. Determination of the electric field. Electrostatic potential. Electric energy and capacitance.
Electro-motive force. Electric current and resistance. Direct-current circuits.
Magnetic force. Determination of the magnetic field. Electromagnetic induction. Alternating-current circuits.
Electromagnetic waves. Light. Geometrical optics.

Mandatory literature

Jaime E. Villate e Luís Miguel Martelo; Problemas resolvidos de Electromagnetismo e Circuitos, 2023
Jaime E. Villate e Luís Miguel Martelo; Electromagnetismo e Circuitos

Complementary Bibliography

David J. Griffiths; Introduction to electrodynamics. ISBN: 0-13-805326-X
Eugene Hecht; Óptica. ISBN: 972-31-0542-X

Comments from the literature

The main bibliography is available at: https://villate.org/eletromagnetismo

Teaching methods and learning activities

- Lectures (T classes): discussion of concepts, examples, experimental demonstrations, and problem-solving.
- Practical sessions (TP classes): problem-solving under the supervision of the instructor and laboratory sessions.

keywords

Physical sciences > Physics > Optics
Physical sciences > Physics > Electromagnetism
Physical sciences > Physics > Applied physics > Experimental physics

Evaluation Type

Distributed evaluation with final exam

Assessment Components

Designation Weight (%)
Exame 60,00
Teste 20,00
Trabalho laboratorial 20,00
Total: 100,00

Amount of time allocated to each course unit

Designation Time (hours)
Estudo autónomo 110,00
Frequência das aulas 52,00
Total: 162,00

Eligibility for exams

-Students can only be admitted to any of the final exams if they are enrolled in the course and if they fulfill the following conditions:
1. Having attended the minimum number of mandatory practical sessions (75%)
2. Having obtained a minimum of 6 (six) out of 20 in the combined grade of the quiz and the lab reports.
- During the semester students will have to take a one-hour quiz and attend two lab sessions whose reports will be assessed.
- Students who were admitted to exams in the 2022/2023 academic year do not need to attend classes and the grades they already obtained in the quiz and the lab reports will be maintained. However, they can choose to take the quiz and submit the lab reports again, in which case the grades previously obtained will be ignored. This decision is irreversible.

Calculation formula of final grade

FG = 0.4×SG + 0.6×FE
Where:
FG = final grade
FE = final exam grade
SG = grade obtained during the semester
SG = 0.5×Q + 0.25×L1 + 0.25×L2
Where:
Q = quiz grade
L1 = first lab report grade
L2 = second lab report grade

Examinations or Special Assignments

N.A.

Internship work/project

N.A.

Special assessment (TE, DA, ...)

Students enrolled under a special regime that allows them to skip classes can just attend the final exam and their final grade will be that of the exam. However, these students can request the professor to be graded as regular students, in which case they have to attend the practical sessions.
Notice that "dirigentes associativos" and athletes are not under this cathegory!

Classification improvement

A student who has already approved the course and would like to improve the grade will have to register for the next exam to the one in which the approval was given. The final grade will result from applying the same formula as for the final grade or it will be the grade of the new exam if it is higher.

Observations

- Students are expected to work at least 6 hours per week at home for this course.
- Any cheating attempt will be severely punished, including failing of the course immediately.
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