The course also discusses the relationship between welding heat input and the formation of the weld metal, fusion zone, and heat-affected zone (HAZ). Topics include iron-carbon relationships, phase transformations, preheating, post-heating, thermal stresses, welding defects, and electrode selection for various ferrous and nonferrous metals.
Emphasis is placed on understanding how metallurgical principles influence weld quality, joint performance, and welding safety in SMAW applications. Laboratory and practical activities are integrated to help students analyze welding conditions and apply proper welding procedures in industrial settings.
Course Description:
This course deals with the fundamental concepts of information technology, including the principles of algorithm development, high-level programming languages, and their applications. It also develops the competencies required for installing, configuring, and testing mechatronics and automation systems, preparing students for real-world industrial and technological environments.
Course Description:
This course introduces the concept of integration and its applications to physical problems such as the evaluation of areas, volumes of revolution, force, and work. It covers fundamental formulas and various techniques of integration applied to both single-variable and multivariable functions. The course also includes the analysis and tracing of functions of two variables to enhance students’ understanding of double and triple integrals, particularly in interpreting volumes of three-dimensional regions bounded by surfaces.
Course Description:
This course covers the fundamental principles of physics, including vectors, kinematics, and dynamics. It also explores concepts such as work, energy, and power; impulse and momentum; rotational motion and dynamics; elasticity and oscillation; fluid mechanics; and thermal processes including expansion, stress, heat transfer, and calorimetry. Additionally, the course introduces wave behavior, electrostatics, electricity, magnetism, and optics, including image formation by plane and curved mirrors as well as thin lenses. These topics aim to develop analytical and problem-solving skills applicable to engineering and technological fields.