Syllabus for Experimental Methods for Physics I
Experimentell metodik för fysik I
Syllabus
- 5 credits
- Course code: 1FA608
- Education cycle: First cycle
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Main field(s) of study and in-depth level:
Physics G1N
Explanation of codes
The code indicates the education cycle and in-depth level of the course in relation to other courses within the same main field of study according to the requirements for general degrees:
First cycle
- G1N: has only upper-secondary level entry requirements
- G1F: has less than 60 credits in first-cycle course/s as entry requirements
- G1E: contains specially designed degree project for Higher Education Diploma
- G2F: has at least 60 credits in first-cycle course/s as entry requirements
- G2E: has at least 60 credits in first-cycle course/s as entry requirements, contains degree project for Bachelor of Arts/Bachelor of Science
- GXX: in-depth level of the course cannot be classified
Second cycle
- A1N: has only first-cycle course/s as entry requirements
- A1F: has second-cycle course/s as entry requirements
- A1E: contains degree project for Master of Arts/Master of Science (60 credits)
- A2E: contains degree project for Master of Arts/Master of Science (120 credits)
- AXX: in-depth level of the course cannot be classified
- Grading system: Fail (U), Pass (3), Pass with credit (4), Pass with distinction (5)
- Established: 2020-02-27
- Established by:
- Revised: 2023-01-27
- Revised by: The Faculty Board of Science and Technology
- Applies from: Autumn 2023
- Entry requirements: General entry requirements and Physics 2, Chemistry 1, Mathematics 4/Mathematics E
- Responsible department: Department of Physics and Astronomy
Learning outcomes
The course is meant to prepare students for further studies in experimental physics.
On completion of the course, the student should be able to:
- formulate hypotheses and problem statements under given conditions
- design and perform physics experiments to investigate problem statements according to the scientific method
- plan and evaluate experiments based on estimated uncertainties and experimental methods
- analyze experimental results using computers
- document experimental work in in the form of a logbook and a laboratory report
- discuss ethical aspects in experimental studies
- present and argue for chosen methods and obtained results
Content
Design of experimental studies and the scientific method. Introduction to ethical aspects in experimental physics. Basic measurement techniques, data handling and analysis. Measurements uncertainties and propagation of measurements uncertainties. Basic statistics for experimental physics. Regression and least squares fitting. Data analysis in Python. Logbook keeping and reporting.
Instruction
Lectures in the form of flipped classroom, tutorials and laboratory exercises. The course uses programmeintegrated communications training with feedback and self-evaluation.
Assessment
Home assignments (1 credit). Logbook, written report and oral presentation of project (2 credits). Oral examination (2 credits).
If there are special reasons for doing so, an examiner may make an exception from the assessment method indicated and allow a student to be assessed by another method. An example of special reasons might be a certificate regarding special pedagogical support from the disability coordinator of the university.
Reading list
Reading list
Applies from: Autumn 2022
Some titles may be available electronically through the University library.
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Taylor, John Robert
An introduction to error analysis : the study of the uncertainties in physical measurements
2. ed.: Sausalito, Calif.: University Science, cop. 1997
Mandatory
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Bevington, Philip R.;
Robinson, D. Keith
Data reduction and error analysis for the physical sciences
3. ed.: Boston: McGraw-Hill, cop. 2003
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Adams, Robert A.;
Essex, Christopher
Calculus : a complete course. Student solutions manual
8. ed.: Toronto: Pearson Canada, cop. 2014
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Hughes, Ifan.;
Hase, Thomas.
Measurements and their Uncertainties : A Practical Guide to Modern Error Analysis.
Oxford: OUP Oxford, 2010
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Lindskog, Jan
Mätvärdesbehandling och rapportering av mätresultat
3. uppl.: Lund: Studentlitteratur, 2010
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Jönsson, Per
MATLAB-beräkningar inom teknik och naturvetenskap
3. [uppdaterade] uppl.: Lund: Studentlitteratur, 2010
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Kanare, Howard M.
Writing the laboratory notebook
Washington: American Chemical Society, 1985