Winter Semester 2006/07
Summer Semester 2007/08
Technical Mechanics I MBZ009
Course content
Lectures
General concepts of mechanics. Vectors
Reduction of the arbitrary spatial system of forces.
The equilibrium equations
Friction
Systems of parallel forces. Centers of gravity and mass. Distributed load
Kinematics of a point
Translational and rotational motion of a rigid body
Plane motion of a rigid body
Spherical and arbitrary motion of a rigid body. Compound motion
Rigid body motions addition
Trusses
Classses
Plane and spatial systems of concurrent forces
Arbitrary plane system of forces
Center of masses. Complex structures. Friction
Spatial system of forces. Static analysis of beams, piles and trusses
Kinematics of a point
Rotational motion of a rigid body
Plane motion
Compound motion
Learning outcomes:Theoretical knowledge and practical habits in the modeling of mechanical engineering structures using the concepts of a particle, a system of particles, a rigid body, equations of statics and kinematics
(in Polish) Rodzaj przedmiotu
Course coordinators
Bibliography
a) basic references
1. Leyko J. (1980), Mechanika ogólna, t. I i II., PWN, Warszawa.
2. Misiak J.: (1989, 1998). Mechanika ogólna, t. I i II. WNT, Warszawa
3. Jakowluk A. (red.). (1993). Mechanika teoretyczna i podstawy teorii mechanizmów i robotów t. I i II. Wyd. PB, Białystok
4. Misiak J.: (1992, 1999) Zadania z mechaniki ogólnej, cz. I, II, III. WNT, Warszawa
5. Czech M., Jakowluk A., Kobyłko J. (1985, 1987). Mechanika techniczna w przykładach i zadaniach
b) supplementary references
.Nizioł J. (1983). Metodyka rozwiązywania zadań z mechaniki, PWN, Warszawa,
2.Mieczerski J. (1971). Zbiór zadań z mechaniki, PWN, Warszawa.
3.Leyko J, Szmelter J. (1980). Zbiór zadań z mechaniki, PWN, Warszawa.
4.Romberg O., Hinrichs N. (2006). Don’t Panic with Mechanics! Vieweg (GWV).
5.Roberts A. P. (2003). Statics and Dynamics with Background Mathematics, Cambridge University Press, Cambridge.::