SUBNUCLEAR PHYSICS LABORATORY
(objectives)
We provide the skills for the realization of a nuclear or subnuclear physics experiment, gaining experience in group work, with planning, measurement, acquisition and computerized management of data, data analysis, results and final scientific report
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Code
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20401859 |
Language
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ITA |
Type of certificate
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Profit certificate
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Credits
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4
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Scientific Disciplinary Sector Code
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FIS/04
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Contact Hours
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14
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Laboratory Hours
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27
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Personal Study Hours
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-
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Type of Activity
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Core compulsory activities
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Credits
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4
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Scientific Disciplinary Sector Code
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FIS/01
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Contact Hours
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14
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Laboratory Hours
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27
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Personal Study Hours
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-
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Type of Activity
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Core compulsory activities
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Teacher
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MARI STEFANO MARIA
(syllabus)
PROGRAM OF LESSONS IN THE CLASSROOM (EQUIVALENT TO APPROXIMATELY 3 CFU) INTRODUCTORY NOTES ON PARTICLE DETECTORS - PHYSICS OF THE DETECTORS USED IN THE LABORATORY ACTIVITY (PLASTIC SPARKLERS, LIQUID SPARKLERS, DETECTORS A GAS, ...) - NOTES ON ELECTRONIC DEVICES REQUIRED FOR READING THE DETECTORS, FOR THE TRIGGER AND IL SYSTEM DATA ACQUISITION SYSTEM - CALLS TO PROGRAMMING - STATISTICAL CALLS FOR THE ANALYSIS DATA. PROGRAM OF THE ACTIVITY IN THE LABORATORY (EQUIVALENT A ABOUT 5 CFU) • ESTIMATE OF THE RESPONSE OF THE DETECTORS USED - VERIFICATION OF THE MEASURED SIGNAL - SETTING OF THE DETECTORS • SET UP OF THE APPARATUS - TRIGGER TRAINING • SET UP OF THE DATA ACQUISITION AND DEVELOPMENT SYSTEM OF ANALYSIS SOFTWARE • MEASUREMENT OF THE PROPOSED GREATNESS (VITA MEDIA DEL MESONE MU AND RELATED QUANTITIES, SPECTRUM OF THE ELECTRON OF THE DECAY OF THE MU, SPECTRUM OF HARD COSMIC RAYS, ...) THE STUDENT IS CALLED TO PERFORM A PART ONLY OF THE EXPERIMENTAL ACTIVITY PROPOSED SO THAT IT MAY COMPARE DIRECTLY WITH THE ISSUES OF LABORATORY. THE FINAL MEASURE WILL BE CARRIED OUT IN THE GROUP
(reference books)
W.R. Leo - Techniques for Nuclear and Particle Physics Experiment - Springer-Verlag W. Blum, L. Roland - Particle Detection with Drift Chambers - Springer-Verlag T. Ferbel - Experimental Techniques in High-Energy Nuclear and Particle Physics F. Sauli - Principles of operation of multiwire proportional and drift chambers I. Lombardo - Problemi di fisica nucleare e subnucleare - Zanichelli
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Dates of beginning and end of teaching activities
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From to |
Delivery mode
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Traditional
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Attendance
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not mandatory
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Evaluation methods
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Oral exam
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Teacher
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DI MICCO BIAGIO
(syllabus)
program of lessons in the classroom
• introductory notes on particle detectors • physics of the detectors used in the laboratory activity (plastic sparklers, liquid sparklers, detectors a gas, ...) • notes on electronic devices required for reading the detectors, for the trigger and il system data acquisition system • calls to programming • statistical calls for the analysis data.
Program of the activity in the laboratory (equivalent a about 5 cfu) • estimate of the response of the detectors used - verification of the measured signal - setting of the detectors • set up of the apparatus - trigger training • set up of the data acquisition and development system of analysis software • measurement of the proposed greatness (vita media del mesone mu and related quantities, spectrum of the electron of the decay of the mu, spectrum of hard cosmic rays, ...) the student is called to perform a part only of the experimental activity proposed so that it may compare directly with the issues of laboratory. the final measure will be carried out in the group
(reference books)
RECOMMENDED TEXTS: W.R. Leo - Techniques for Nuclear and Particle Physics Experiment - Springer-Verlag W. Blum, L. Roland - Particle Detection with Drift Chambers - Springer-Verlag T. Ferbel - Experimental Techniques in High-Energy Nuclear and Particle Physics F. Sauli - Principles of operation of multiwire proportional and drift chambers
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Dates of beginning and end of teaching activities
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From to |
Delivery mode
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Traditional
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Attendance
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not mandatory
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Evaluation methods
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Oral exam
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Teacher
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BIANCHI Lucrezia
(syllabus)
see the profile of the professor in charge of the course
(reference books)
vedi scheda del titolare del corso
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Dates of beginning and end of teaching activities
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From to |
Delivery mode
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Traditional
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Attendance
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not mandatory
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Evaluation methods
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Oral exam
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