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(objectives)
The primary aim of the course is to provide to the students the skills to formalise a problem of rigid-body mechanics using the appropriate mathematical tools. Particular attention is paid on the modelling and analysis of simple engineering problems, in order to provide the cultural background required to approach problems of analysis and design in mechanical engineering.
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Code
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20810301 |
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Language
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ITA |
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Type of certificate
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Profit certificate
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Credits
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6
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Scientific Disciplinary Sector Code
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MAT/07
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Contact Hours
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54
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Type of Activity
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Basic compulsory activities
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Teacher
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IEMMA UMBERTO
(syllabus)
Teaching unit I – Fundamental tools and methods Elements of vector algebra Rotation matrix ODE homogeneous and non-homogeneous Spectral analysis of symmetric matrices Eigenvalues problem and diagonalization Conservative, potential and irrotational vector fields Teaching unit II – Mechanics of a material particle Fundamental properties of the motion of a particle Dynamics of free and constrained material elements Un-damped and damped oscillators Mechanical work, power and energy Stabilty of mechanical equilibrium Teaching unit III – Mechanics of systems of particles Internal forces Conservation of momentum Conservation of angular momentum Kinetic energy, Koenig’s theorem Teaching unit IV – Rigid-body motion and Galilean relativity Two- and Three-dimensional rigid-body motion Kinematics in non-inertial frames of reference Dynamics in non-inertial frames of reference, fictitious forces Derivative of vectors in moving frames of reference Trasformazioni tra riferimenti in moto relativo Derivata temporale di R Teaching unit V – Statics and dynamics of rigid bodies Dynamics Conservation of momentum and angular momentum Inertia tensor Ellipsoid of inertia Koenig’s theorem Euler equations Rotation about central axes Gyroscopes and precessions Statics Equivalent forces Central axis of a system of forces Constraints reactions Graphic methods for the analysis of equilibrium Teaching unit VI – Elements of Lagrangean mechanics
(reference books)
Iemma, Gennaretti, "Elementi di Meccanica Razionale", Ed. Efesto Gennareti, De Rubeis, Iemma, Burghignoli, "Esercizi di Meccanica Razionale", Ed. Efesto
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Dates of beginning and end of teaching activities
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From to |
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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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Written test
Oral exam
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Teacher
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BURGHIGNOLI LORENZO
(syllabus)
Conservative, potential, irrotational vector fields. Spectral analysis of symmetric matrices. Eigenvalues problem and diagonalization. Fundamental properties of the motion of a particle. Dynamics of free and constrained material elements.
(reference books)
Iemma, Gennaretti, "Elementi di Meccanica Razionale", Ed. Efesto Gennaretti, De Rubeis, Iemma, Burghignoli, "Esercizi di Meccanica Razionale", Ed. Efesto
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Dates of beginning and end of teaching activities
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From to |
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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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Written test
Oral exam
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