ADA AMENDOLA | MATHEMATICAL AND MECHANICAL MODELS FOR ENGINEERING AND ARCHITECTURAL PROBLEMS
ADA AMENDOLA MATHEMATICAL AND MECHANICAL MODELS FOR ENGINEERING AND ARCHITECTURAL PROBLEMS
8802100015 | |
DEPARTMENT OF CIVIL ENGINEERING | |
P.H.D. COURSE | |
RISK AND SUSTAINABILITY IN CIVIL, ARCHITECTURAL AND ENVIRONMENTAL ENGINEERING SYSTEMS | |
2020/2021 |
YEAR OF COURSE 1 | |
YEAR OF DIDACTIC SYSTEM 2020 | |
ANNUALE |
SSD | CFU | HOURS | ACTIVITY | |
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MAT/05 | 6 | 42 | LESSONS |
Objectives | |
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LEARNING RESULTS AND EXPERTISE TO ACQUIRE: KNOWLEDGE ON MATHEMATICAL AND MECHANICAL MODELS FOR SEISMIC ISOLATION OF STRUCTURES, MECHANICAL METAMATERIALS AND THE THEORY OF PROBABILISTIC SAFETY OF STRUCTURES |
Prerequisites | |
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BASIC KNOWLEDGE OF MATHEMATICS AND THEORY OF STRUCTURES |
Contents | |
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-MECHANICAL MODELS OF SEISMIC ISOLATION DEVICES -CONSTUTUTIVE LAWS OF DISSIPATIVE BRACES AND VISCOUS DAMPERS -BASIC PRINCIPLES OF MECHANICAL METAMATERIALS -TENSEGRITY STRUCTURES -DISPERSION LAWS -PROBABILISTIC THEORY OF THE SAFETY OF STRUCTURES |
Teaching Methods | |
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THE CLASS INCLUDES THEORETICAL LECTURES (60%) AND A CLASSROOM EXERCISE ON THE WRITING A PATENT APPLICATION FOR INVENTION (40%). |
Verification of learning | |
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THE FINAL EXAM CONSISTS ON A WRITTEN TEST AND/OR AN ORAL INTERVIEW. THE EXAM COVERS THE THEORETICAL AND APPLICATIVE ASPECTS OF THE CLASS MODULES. |
Texts | |
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- ONLINE CLASS NOTES |
More Information | |
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SUPPLEMENTARY REFERENCES: - SKELTON, R. E., DE OLIVEIRA, M. C., 2010. TENSEGRITY SYSTEMS. SPRINGER. - G. AUGUSTI, A BARATTA, F. CASCIATI, PROBABILISTIC METHODS IN STRUCTURAL ENGINEERING". CHAPMAN & HALL EDITORS, LONDON, 1984, PP. 584. ISBN-10: 0412222302 ISBN-13: 978-0412222306 · |
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