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Fluid Mechanics

Description
Fluid properties, statics, dynamics of fluids; lagrangian and eulerian description, Reynolds transport theorem; Bernoulli theorem; mass, momentum and energy conservation equations; viscous and non-viscous
flow; Pumps, turbines, flow in pipes and around submerged obstacles.

ECTS credits
6

Teaching Language
English

Exam Language
English

Support Materials Language
English

Basic Learning Outcomes
  • Knowledge of the basic principles of fluid mechanics (B11.1 - MEB - Knowledge of the basic principles of fluid mechanics)
  • Applied knowledge of the basic principles of fluid mechanics for engineering problem-solving (B11.2 - MEB - Applied knowledge of the basic principles of fluid mechanics for engineering problem-solving)
  • Calculation of pipes, channels, and fluid systems (B11.3 - MEB - Calculation of pipes, channels, and fluid systems)

Final Learning Outcomes
  • Apply knowledge of Fluid Mechanics to the resolution of engineering problems (F11 - MEB - Apply knowledge of Fluid Mechanics to the resolution of engineering problems)

Course categorized

Managing Entity (faculty)