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| Module code:  BIBA772 | 
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| 3VU (3 hours per week) | 
| 3 | 
| Semester: 7 | 
| Mandatory course: yes | 
| Language of instruction: German
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| Assessment: Written exam
 
 [updated 28.09.2020]
 
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| BIBA772 (P110-0071) Civil and structural engineering, Bachelor, ASPO 01.04.2009
, semester 7, mandatory course
 BIBA772 (P110-0071) Civil and structural engineering, Bachelor, ASPO 01.10.2011
, semester 7, mandatory course
 BIBA772 (P110-0071) Civil and structural engineering, Bachelor, ASPO 01.10.2017
, semester 7, mandatory course
 
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| 45 class hours (= 33.75 clock hours) over a 15-week period. The total student study time is 90 hours (equivalent to 3 ECTS credits).
 There are therefore 56.25 hours available for class preparation and follow-up work and exam preparation.
 
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| Recommended prerequisites (modules): BIBA460 Steel Construction I
 BIBA645
 
 
 [updated 19.08.2011]
 
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| Recommended as prerequisite for: 
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| Module coordinator: Prof. Dr. Markus Enders-Comberg
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| Lecturer:  Prof. Dr. Markus Enders-Comberg 
 [updated 15.02.2010]
 
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| Learning outcomes: After successfully completing this module, students will:
 - be able to carry out stability analyses for unstiffened and stiffened rectangular plates,
 
 - be able to carry out structural safety checks according to the theory of plasticity
 - be able to carry out fatigue and operational stability tests
 They will be able to independently develop and apply subject-related content.
 
 [updated 28.09.2020]
 
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| Module content: - Buckling of rectangular plates: Linear buckling theory, ideal and real buckling stresses under random storage conditions, plate buckling checks according to DIN 18800/Part 3, stiffened rectangular plates
 - Basic frame structures: Applying the plasticity theory first order, proofs according to the plastic hinge method
 - Fatigue: Very high cycle fatigue and high cycle fatigue verifications for structures with non-stationary loading
 
 [updated 28.09.2020]
 
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| Recommended or required reading: Lecture notes (will be passed out at the beginning of the semester)
 Lohse, W.: Stahlbau
 Petersen, Ch.: Statik und Stabilität der Baukonstruktionen,
 Petersen, Ch.: Stahlbau
 
 [updated 28.09.2020]
 
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