Teaching GuideTerm
Higher Technical University College of Civil Engineering
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Grao en Tecnoloxía da Enxeñaría Civil
 Subjects
  Mecánica
   Contents
Topic Sub-topic
Chapter 1. Kinematics of particles 1.1. Rectilinear motion of particles
1.2. Special cases and relative motion
1.3. Graphical solutions
1.4. Curvilinear motion of particles
1.5. Non-rectangular components
Chapter 2. Kinematics of particles: Newton’s second law 2.1. Newton’s second law and linear momentum
2.2. Angular momentum
Chapter 3. Kinematics of particles: Energy and momentum method 3.1. Work and energy
3.2. Conservation of energy
3.3. Impulse and momentum
Chapter 4. Systems of particles 4.1. Applying Newton’s second law and momentum principles to systems of particles
4.2. Energy and momentum methods for a system of particles
Chapter 5. Kinematics of rigid bodies 5.1. Translation and fixed-axis rotation
5.2. General plane motion: Velocity
5.3. Instantaneous center of rotation
5.4. General plane motion: Acceleration
5.5. Analysing motion with respect to a rotating frame
5.6. Motion of a rigid body in space
5.7. Motion relative to a moving reference frame
Chapter 6. Plane motion of rigid bodies: Forces and acceleration 6.1. Kinetics of a rigid body
6.2. Constrained plane motion
Chapter 7. Plane motion of rigid bodies: Energy and momentum methods 7.1. Energy methods for a rigid body in plane motion
7.2. Momentum methods for a rigid body in plane motion
Chapter 8. Kinetics of rigid bodies in three dimensions 8.1. Energy and momentum of a rigid body in three dimensions
8.2. Motion of a rigid body in three dimensions
Chapter 9. Mechanical vibrations 9.1 Vibrations without damping
9.2 Free vibrations of rigid bodies
9.3 Applying the principle of conservation of energy
9.4 Forced vibrations
9.5 Damped vibrations
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