| ÖÇ1 | The student defines special manufacturing methods and explains the differences between these methods and classical manufacturing techniques. |
| ÖÇ2 | Explains the basic principles of the electroerosion (EDM) method, its material removal mechanism and industrial usage areas. |
| ÖÇ3 | Describes the wire erosion (WEDM) method and analyzes the effects of processing parameters on surface quality and precision. |
| ÖÇ4 | Explains the working principle, advantages and application areas of the electrochemical machining (ECM) method. |
| ÖÇ5 | Understands the fundamentals of chemical and photochemical processing techniques and defines the application areas of these methods at the micro scale. |
| ÖÇ6 | It evaluates the principle of laser beam machining, heat effect zone and material behavior. |
| ÖÇ7 | Compare electron beam, plasma and water jet machining techniques with each other and select the appropriate method. |
| ÖÇ8 | As part of the midterm exam, the student analyzes the specific manufacturing methods learned in the first seven weeks and compares the advantages and disadvantages of different techniques. |
| ÖÇ9 | Explains the basic principles and classification of additive manufacturing. |
| ÖÇ10 | Explains the working principles and application areas of powder and laser-based additive manufacturing methods (SLM, SLS, EBM). |
| ÖÇ11 | Recognizes polymer and metal based additive manufacturing methods and evaluates typical errors and tolerance control methods. |
| ÖÇ12 | Explains the operating logic of ultrasonic machining and friction stir welding (FSW) methods and examines application examples. |
| ÖÇ13 | Compares different specific manufacturing methods in terms of technical, economic and environmental aspects and gains the ability to choose the appropriate method. |
| ÖÇ14 | Analyzes current industrial applications and evaluates the importance and future potential of special manufacturing technologies in engineering. |