TEHNIČKA MEHANIKA


Semester: 1
ECTS: 7
Status: Obavezan
Lessons: 3+3+0
Double: Ne
ECTS catalogue
Learning outcomes:

Upon successful completion of the course, the student will be able to: - Get a wide range of integrated theoretical and practical knowledge of rigid body mechanics and fluid mechanics, and especially from the statics and dynamics of rigid bodies and fluids that are applicable in various fields of engineering and especially in the field of Marine Engineering; - Get specific knowledge related to critical thinking and reasoning in considering and solving practical problems in the field of statics and dynamics of rigid bodies and fluids; - Master the methods of studying resting state and movement of the body and the fluid (water) under the influence of the forces and pressures based on the basic principles and laws of mechanics; - Apply methods, basic laws and principles of mechanics to the study of rest and movement of material point under the action of force, the study of body movement (translational, craft) based on the equations of motion and the basic laws, principles and theorems of rigid body mechanics and fluid mechanics (Newton's laws, D'Alamber`s principle, the theorem on the change of kinetic energy, theorem on the change of momentum, Pascal's law, the law of conservation of energy - Bernoulli's equation), and in particular on specific issues such as: periodic free and harmonic motion, balancing rotating masses, reduced speed rotation bodies rotate, the friction of hard bodies and fluid, emphasizing the fluid; - Give a critical assessment regarding developments in the analysis of the solid bodies and fluid movement during the application of the basic laws, principles and theorems of mechanics; - Recognize the importance of individual size varies mechanics (speed, acceleration, force, mass, moment of inertia, torque, pressure, kinetic, potential, and pull energy, work momentum, angular momentum, power, thrust, absolute and relative pressure) and their physical meaning; - Show the ability to independently solve specific problems of the problem of rest state and movement of the solid body and the fluid, and to the problems of sleep and movement under the force of friction and without taking into account the friction force, problems related to balancing the rotating mass, problems related to body movements, problems of computations of energy, work, power, volume and angular momentum, the problems of determining the hydrostatic pressure, problems related to the swimming body and for the study of fluid flow in the pipeline, leaking fluids problems, determining the energy losses in the power flow. - Get a wide range of integrated theoretical and practical knowledge of the mechanics of deformable bodies and especially from the resistance of materials that are applicable in various fields of engineering and especially in Marine Engineering; - Get specific knowledge related to critical thinking and reasoning in considering and solving practical problems in the field of strength of materials and structural design; - Master the calculation methods of structural components and structures composed of beams; - Apply calculation methods of beams subjected to basic types of stress, axial strain, bending, twisting, combined stresses, etc.; - Provide critical evaluation related to the analysis of stress and strain loaded body forms a beam girder - rod; - Recognize and distinguish the character of individual impact: load, body shape, type of material from which the body is made of the size of internal forces - stress and strain of the body; - Show the ability to independently calculate and optimize the beam girders loaded in different ways and structures composed of beams.

Teaching staff

Name Lectures Exercises Laboratory
STEFAN ĆULAFIĆ3x1
39B+28P
3x1
39B+28P

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