First cycle
degree courses
Second cycle
degree courses
Single cycle
degree courses
School of Science
PHYSICS
Course unit
ADVANCED PHYSICS LABORATORY B
SCP7081758, A.A. 2018/19

Information concerning the students who enrolled in A.Y. 2017/18

Information on the course unit
Degree course Second cycle degree in
PHYSICS
SC2382, Degree course structure A.Y. 2017/18, A.Y. 2018/19
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Degree course track PHYSICS OF THE FUNDAMENTAL INTERACTIONS [001PD]
Number of ECTS credits allocated 6.0
Type of assessment Mark
Course unit English denomination ADVANCED PHYSICS LABORATORY B
Website of the academic structure http://physics.scienze.unipd.it/2018/laurea_magistrale
Department of reference Department of Physics and Astronomy
Mandatory attendance
Language of instruction English
Branch PADOVA
Single Course unit The Course unit can be attended under the option Single Course unit attendance
Optional Course unit The Course unit can be chosen as Optional Course unit

Lecturers
Teacher in charge MARCO BAZZAN FIS/03
Other lecturers GIANMARIA COLLAZUOL FIS/01
CHRISTIAN FARNESE FIS/04
GIAMPAOLO MISTURA FIS/03
GIOVANNA MONTAGNOLI FIS/01
GABRIELE SIMI FIS/01

Mutuated
Course unit code Course unit name Teacher in charge Degree course code
SCP7081758 ADVANCED PHYSICS LABORATORY B MARCO BAZZAN SC2382
SCP7081758 ADVANCED PHYSICS LABORATORY B MARCO BAZZAN SC2382

ECTS: details
Type Scientific-Disciplinary Sector Credits allocated
Educational activities in elective or integrative disciplines FIS/01 Experimental Physics 6.0

Course unit organization
Period First semester
Year 2nd Year
Teaching method frontal

Type of hours Credits Teaching
hours
Hours of
Individual study
Shifts
Laboratory 4.0 32 68.0 6
Lecture 2.0 16 34.0 No turn

Calendar
Start of activities 01/10/2018
End of activities 18/01/2019

Examination board
Board From To Members of the board
1 ADVANCED PHYSICS LABORATORY B 01/10/2018 30/11/2019 BAZZAN MARCO (Presidente)
MISTURA GIAMPAOLO (Membro Effettivo)
COLLAZUOL GIANMARIA (Supplente)
MONTAGNOLI GIOVANNA (Supplente)
SIMI GABRIELE (Supplente)

Syllabus
Prerequisites: Laboratory courses of preceding years and basic skills in optics and electronics
Target skills and knowledge: Capability to design and realize independently an experimental setup. Data analysis skills and capability in identifying possible systematic errors.
Capability of exploiting formerly aquired knowledges to provide a reliable measure of a physical quantity.
Examination methods: Written report and oral examination.
Assessment criteria: Independence in the realization of a given experiment and capability of analyzing critically the obtained results.
Orignal solutions providing any improvement to the proposed experiences will be evaluated positively.
Course unit contents: General experimental techniques for the physics laboratory, in particular: electronics, optics, cryogenics and vacuum techniques.
Planned learning activities and teaching methods: The course has a strong "hands on" character. The participants will be divided in small groups of 2 - 3 elements and will be asked to realize from the very beginning a physics experiment chosen between the following areas: electronics, optics, particle and nuclear physics and solid state. Few frontal lessons devoted to the general explanation of some basic experimental techniques will also be given.
Additional notes about suggested reading: Notes provided by the Teachers downloadable from the web.
Textbooks (and optional supplementary readings)
  • Saleh, Bahaa E. A.; Teich, Malvin Carl, Fundamentals of photonicsBahaa E. A. Saleh, Malvin Carl Teich. Hoboken: New Jersey, Wiley, --. Cerca nel catalogo

Innovative teaching methods: Teaching and learning strategies
  • Lecturing
  • Laboratory
  • Problem based learning
  • Interactive lecturing
  • Working in group
  • Action learning
  • Problem solving
  • Work-integrated learning