ENERGY SYSTEMS ENGINEERING | |||||
Bachelor | TR-NQF-HE: Level 6 | QF-EHEA: First Cycle | EQF-LLL: Level 6 |
Course Code | Course Name | Semester | Theoretical | Practical | Credit | ECTS |
GEP0824 | Modern Logic | Spring Fall |
3 | 0 | 3 | 5 |
This catalog is for information purposes. Course status is determined by the relevant department at the beginning of semester. |
Language of instruction: | English |
Type of course: | GE-Elective |
Course Level: | Bachelor’s Degree (First Cycle) |
Mode of Delivery: | Face to face |
Course Coordinator : | Dr. BURCU ALARSLAN ULUDAŞ |
Recommended Optional Program Components: | None |
Course Objectives: | To make students to be acquainted with the subject-matters and concepts of modern logic and to learn the way of thinking about those subject-matters and concepts. |
The students who have succeeded in this course; After successfully completing this course the student will be able •Recognises problems of modern logic. •Identifies the relation of modern logic and other disciplines. •Tells the difference between modern and classic logic. •Correlates between logic and mathematics. •Tells proposition and reasoning by symbols. |
Modern logic, Logic of truth function, Method of formal inference, Quantification logic, Philosophy of logic. |
Week | Subject | Related Preparation |
1) | Introduction | |
2) | Introduction to modern logic | Course notes |
3) | Logic of truth function | Course notes |
4) | Logic of truth function | Course notes |
5) | Logic of truth function | Course notes |
6) | Method of formal inference | Course notes |
7) | Method of formal inference | Course notes |
8) | Quantification logic | Course notes |
9) | Quantification logic | Course notes |
10) | Axiomatic method | Course notes |
11) | Axiomatic method | Course notes |
12) | Problems about logic | Course notes |
13) | Philosophy, science, logic | Course notes |
14) | Philosophy of logic | Course notes |
Course Notes / Textbooks: | |
References: | Doğan Özlem, Mantık, İstanbul 1996 Cemal Yıldırım, Mantık ‘Doğru Düşünme Yöntemi’ Bilgi yayınevi Teo Grunberg, Sembolik Mantık, El Kitabı, ODTÜ Geliştirme Vakfı Yayıncılık |
Semester Requirements | Number of Activities | Level of Contribution |
Attendance | 14 | % 10 |
Homework Assignments | 2 | % 20 |
Midterms | 1 | % 20 |
Final | 1 | % 50 |
Total | % 100 | |
PERCENTAGE OF SEMESTER WORK | % 50 | |
PERCENTAGE OF FINAL WORK | % 50 | |
Total | % 100 |
Activities | Number of Activities | Duration (Hours) | Workload |
Course Hours | 14 | 3 | 42 |
Homework Assignments | 2 | 10 | 20 |
Midterms | 1 | 15 | 15 |
Final | 1 | 20 | 20 |
Total Workload | 97 |
No Effect | 1 Lowest | 2 Low | 3 Average | 4 High | 5 Highest |
Program Outcomes | Level of Contribution | |
1) | Build up a body of knowledge in mathematics, science and Energy Systems Engineering subjects; use theoretical and applied information in these areas to model and solve complex engineering problems. | |
2) | Ability to identify, formulate, and solve complex Energy Systems Engineering problems; select and apply proper modeling and analysis methods for this purpose. | |
3) | Ability to design complex Energy systems, processes, devices or products under realistic constraints and conditions, in such a way as to meet the desired result; apply modern design methods for this purpose. | |
4) | Ability to devise, select, and use modern techniques and tools needed for solving complex problems in Energy Systems Engineering practice; employ information technologies effectively. | |
5) | Ability to design and conduct numerical or pysical experiments, collect data, analyze and interpret results for investigating the complex problems specific to Energy Systems Engineering. | |
6) | Ability to cooperate efficiently in intra-disciplinary and multi-disciplinary teams; and show self-reliance when working on Energy Systems-related problems | |
7) | Ability to communicate effectively in English and Turkish (if he/she is a Turkish citizen), both orally and in writing. Write and understand reports, prepare design and production reports, deliver effective presentations, give and receive clear and understandable instructions. | |
8) | Recognize the need for life-long learning; show ability to access information, to follow developments in science and technology, and to continuously educate oneself. | |
9) | Develop an awareness of professional and ethical responsibility, and behave accordingly. Be informed about the standards used in Energy Systems Engineering applications. | |
10) | Learn about business life practices such as project management, risk management, and change management; develop an awareness of entrepreneurship, innovation, and sustainable development. | |
11) | Acquire knowledge about the effects of practices of Energys Systems Engineering on health, environment, security in universal and social scope, and the contemporary problems of Energys Systems engineering; is aware of the legal consequences of Energys Systems engineering solutions. |