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Main menu for Browse IS/STAG
Courses found, count: 1
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Abbreviation unit / Course abbreviation |
Title |
Variant |
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KEI
/
ANT
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Antennas
Show course
Antennas
|
2023/2024
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Course info
KEI / ANT
:
Course description
Department/Unit / Abbreviation
|
KEI
/
ANT
|
Academic Year
|
2023/2024
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Academic Year
|
2023/2024
|
Title
|
Antennas
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Form of course completion
|
Exam
|
Form of course completion
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Exam
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Accredited / Credits
|
Yes,
4
Cred.
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Type of completion
|
Combined
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Type of completion
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Combined
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Time requirements
|
Lecture
2
[Hours/Week]
Tutorial
2
[Hours/Week]
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Course credit prior to examination
|
Yes
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Course credit prior to examination
|
Yes
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Automatic acceptance of credit before examination
|
Yes in the case of a previous evaluation 4 nebo nic.
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Included in study average
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YES
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Language of instruction
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Czech, English
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Occ/max
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Automatic acceptance of credit before examination
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Yes in the case of a previous evaluation 4 nebo nic.
|
Summer semester
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0 / -
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0 / -
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0 / -
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Included in study average
|
YES
|
Winter semester
|
2 / -
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0 / -
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0 / -
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Repeated registration
|
NO
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Repeated registration
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NO
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Timetable
|
Yes
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Semester taught
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Winter + Summer
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Semester taught
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Winter + Summer
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Minimum (B + C) students
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10
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Optional course |
Yes
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Optional course
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Yes
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Language of instruction
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Czech, English
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Internship duration
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0
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No. of hours of on-premise lessons |
|
Evaluation scale |
1|2|3|4 |
Periodicity |
každý rok
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Evaluation scale for credit before examination |
S|N |
Periodicita upřesnění |
|
Fundamental theoretical course |
No
|
Fundamental course |
Yes
|
Fundamental theoretical course |
No
|
Evaluation scale |
1|2|3|4 |
Evaluation scale for credit before examination |
S|N |
Substituted course
|
KAE/ANT
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Preclusive courses
|
N/A
|
Prerequisite courses
|
N/A
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Informally recommended courses
|
N/A
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Courses depending on this Course
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KEI/SNMVT
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Histogram of students' grades over the years:
Graphic PNG
,
XLS
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Course objectives:
|
Introduce students especially to: Maxwell equations, electric and vector potential, wave equation, wave propagation, ground waves, waves in ionosphere, electromagnetic field of electric and magnetic dipole, directivity of antenna, impedance properties of antenna, linear antennas for long, medium and short waves, linear antenna supply, symmetrisation and impedance matching, antenna arrays, general, phased and uniform type, planar antennas for VHF, geometric and wave optics, reflector antennas, lenses.
|
Requirements on student
|
Active presence on seminars and elaboration of term project. Learn contents of subject, which is documented by passing of exam test and oral examination.
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Content
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Maxwell equations, electric and vector potential, wave equation, wave propagation, ground waves, waves in ionosphere, electromagnetic field of electric and magnetic dipole, directivity of antenna, impedance properties of antenna, linear antennas for long, medium and short waves, linear antenna supply, symmetrisation and impedance matching, antenna arrays, general, phased and uniform type, planar antennas for VHF, geometric and wave optics, reflector antennas, lenses.
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Activities
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Fields of study
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Guarantors and lecturers
|
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Literature
|
-
Recommended:
Balanis, Constantine A. Antenna theory : analysis and design. 3th ed. Hoboken : John Wiley & Sons, 2005. ISBN 0-471-66782-X.
-
Recommended:
Kraus, John D.; Marhefka, Ronald J. Antennas : for all applications. 3rd ed. Boston : McGraw-Hill Science, 2002. ISBN 0-7-232103-2.
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Recommended:
Vávra, Š., Turán J. Antény a šírenie elektromagnetických vĺn. Alfa, Bratislava, 1989. ISBN 80-05-00131-2.
-
Recommended:
Prokop, Jaroslav; Vokurka, Jaroslav. Šíření elektromagnetických vln a antény. Vyd. 1. Praha : SNTL, 1980.
-
Recommended:
Mazánek, Miloš; Pechač, Pavel. Šíření elektromagnetických vln a antény. 2., přeprac. vyd. Praha : ČVUT, 2005. ISBN 80-01-03032-6.
-
On-line library catalogues
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Time requirements
|
All forms of study
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Activities
|
Time requirements for activity [h]
|
Practical training (number of hours)
|
13
|
Preparation for an examination (30-60)
|
39
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Preparation for comprehensive test (10-40)
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13
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Contact hours
|
39
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Total
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104
|
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Prerequisites
|
Knowledge - students are expected to possess the following knowledge before the course commences to finish it successfully: |
describe fundamentals of electronics and of electromagnetic field theory |
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Learning outcomes
|
Knowledge - knowledge resulting from the course: |
write wave equation |
describe propagation of wave types propagation |
describe ground waves, ionospheric waves |
describe electromagnetic field of electric and magnetic dipole |
describe antenna directivity and its impedance properties |
describe linear antennas for long, medium, and short waves |
describe linear antenna feeding |
describe symetrization and impedance matching |
describe antenna arrays |
describe planar antennas for VHF |
describe geometrical and wave optics |
describe reflector antennas |
describe antenna lenses |
Skills - skills resulting from the course: |
find solution of wave equation |
can resolve electromagnetic field of electric and magnetic dipole |
Competences - competences resulting from the course: |
N/A |
N/A |
N/A |
|
Assessment methods
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Knowledge - knowledge achieved by taking this course are verified by the following means: |
Combined exam |
Skills - skills achieved by taking this course are verified by the following means: |
Project |
Individual presentation at a seminar |
Competences - competence achieved by taking this course are verified by the following means: |
Combined exam |
Individual presentation at a seminar |
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Teaching methods
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Knowledge - the following training methods are used to achieve the required knowledge: |
Lecture |
Seminar |
Laboratory work |
Skills - the following training methods are used to achieve the required skills: |
Laboratory work |
Project-based instruction |
Lecture with visual aids |
Competences - the following training methods are used to achieve the required competences: |
Lecture |
Cooperative instruction |
Students' portfolio |
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