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TERMODİNAMİK PROGRAMME COURSE DESCRIPTION

Code Name of the Course Unit Semester In-Class Hours (T+P) Credit ECTS Credit
MKP256 TERMODİNAMİK 4 3 3 6

GENERAL INFORMATION

Language of Instruction : Turkish
Level of the Course Unit : ASSOCIATE DEGREE, TYY: + 5.Level, EQF-LLL: 5.Level, QF-EHEA: Short Cycle
Type of the Course : Compulsory
Mode of Delivery of the Course Unit -
Coordinator of the Course Unit Lecturer ALİ GÜRCAN
Instructor(s) of the Course Unit
Course Prerequisite No

OBJECTIVES AND CONTENTS

Objectives of the Course Unit: Energy and its types, phase changes, pure substances, application of the conservation of energy principle to practice for open and closed systems.
Contents of the Course Unit: Basic concepts, units and systems; System properties; Equilibrium state; Concepts of energy, work, heat; Work-heat relationship; PV diagram; Pure substance; PVT relationship; Ideal gas equation; Real gases; Pure substances, First law of thermodynamics; Relations between enthalpy-internal energy and specific heat; General energy equation; Application of the first law to closed and open systems; Phase changes of ideal gases. Properties (Property relations, PV, TS diagrams), Ideal gas equation and phase changes of ideal gases, 1st law of thermodynamics, 2nd law of thermodynamics.

KEY LEARNING OUTCOMES OF THE COURSE UNIT (On successful completion of this course unit, students/learners will or will be able to)

Students will be able to recognize and apply the basic definitions, concepts, and laws of thermodynamics; in this context, they will be able to identify and describe different types of energy (such as heat and work) and state variables in process changes and interpret the results.
They gain knowledge about the phases of pure substances and can describe their properties.
Can apply the law of conservation of energy in closed systems to encountered technological problems.
Can apply conservation laws and perform technical analysis in open systems.

WEEKLY COURSE CONTENTS AND STUDY MATERIALS FOR PRELIMINARY & FURTHER STUDY

Week Preparatory Topics(Subjects) Method
1 - Basic Concepts (System, Environment, Phase Change, Cycle) Zeroth Law of Thermodynamics Expression
2 Book Heat and Work Transformations Expression
3 Book Heat and Work Transformations Expression
4 Book Thermodynamic Properties of Pure Substance (Property Relations, PV, TS Diagrams) Expression
5 Book Thermodynamic Properties of Pure Substance (Property Relations, PV, TS Diagrams) Expression
6 Book Thermodynamic Properties of Pure Substance (Property Relations, PV, TS Diagrams) Expression
7 Book The Ideal Gas Equation and Phase Changes of Ideal Gases Expression
8 Book Energy Analysis of Closed Systems Expression
9 Book Energy Analysis of Closed Systems Expression
10 - MID-TERM EXAM -
11 Book Energy Analysis of Closed Systems Expression
12 Book Energy Analysis of Closed Systems Expression
13 Book Energy Analysis of Open Systems Expression
14 Book Energy Analysis of Open Systems Expression
15 Book Energy Analysis of Open Systems Expression
16 - FINAL EXAM -
17 - FINAL EXAM -

SOURCE MATERIALS & RECOMMENDED READING

Çengel, Y.(2019). Thermodynamics. Palme Publishing

ASSESSMENT

Assessment & Grading of In-Term Activities Number of Activities Degree of Contribution (%) Description Examination Method
Level of Contribution
0 1 2 3 4 5

CONTRIBUTION OF THE COURSE UNIT TO THE PROGRAMME LEARNING OUTCOMES

KNOWLEDGE

Theoretical

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
Machine technology (manufacturing, design, research and development, qualitycontrol areas) to have the basic knowledge and skills.
4

KNOWLEDGE

Factual

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
Work required by the profession before, during and after working on the necessary security measures and emergency response information about a possible accident to have to be done.
4
2
Quantitative data required by the profession to have knowledge of processes and ability to use mathematical formulas to make.
5

SKILLS

Cognitive

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
When designing the material selection and inspection of machine parts to be informed about and to know the path to be followed in the examination.
4
2
Mold calculation, design, preparation and production of molds have knowledge of the product.
3
3
Using the package programs needed to make devices such as CNC manufacturing (CAM) to produce.
2

SKILLS

Practical

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
Be able to dimensioning and control accounts of the elements of the machine.
4
2
Measurement and control make machine parts. Measurement and control of knowledge, skills and experience to have.
5
3
Advanced manufacturing method, the CNC lathe, milling machine and so on. Having the knowledge and skills about the machines.
2

OCCUPATIONAL

Autonomy & Responsibility

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
Management processes required to have knowledge of their profession.
4
2
Required by the profession to have knowledge of ethical issues. Be healthy persons.
4

OCCUPATIONAL

Learning to Learn

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
Having the knowledge and skills about quality assurance standards.
4
2
Access information using the computational facilities of technological issues and improve themselves.
4
3
Machine parts pre-production design 2 and 3 dimensional in the computer environment (CAD). Designed to have the ability to do analysis on the system.
4

OCCUPATIONAL

Communication & Social

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
Effective use of verbal by using the Turkish Language , written in professional and social interactions.
5
2
Having knowledge about Atatürk’s Principles and Revolution History, being able to express himself/herself in social and cultural area.
5

OCCUPATIONAL

Occupational and/or Vocational

Programme Learning Outcomes Level of Contribution
0 1 2 3 4 5
1
Having the knowledge and skills related to welding.
2

WORKLOAD & ECTS CREDITS OF THE COURSE UNIT

Workload for Learning & Teaching Activities

Type of the Learning Activites Learning Activities (# of week) Duration (hours, h) Workload (h)
Lecture & In-Class Activities 14 3 42
Preliminary & Further Study 13 7 91
Land Surveying 0 0 0
Group Work 0 0 0
Laboratory 0 0 0
Reading 0 0 0
Assignment (Homework) 0 0 0
Project Work 0 0 0
Seminar 0 0 0
Internship 0 0 0
Technical Visit 0 0 0
Web Based Learning 0 0 0
Implementation/Application/Practice 0 0 0
Practice at a workplace 0 0 0
Occupational Activity 0 0 0
Social Activity 0 0 0
Thesis Work 0 0 0
Field Study 0 0 0
Report Writing 0 0 0
Final Exam 1 1 1
Preparation for the Final Exam 1 10 10
Mid-Term Exam 1 1 1
Preparation for the Mid-Term Exam 1 9 9
Short Exam 0 0 0
Preparation for the Short Exam 0 0 0
TOTAL 31 0 154
Total Workload of the Course Unit 154
Workload (h) / 25.5 6
ECTS Credits allocated for the Course Unit 6,0