UNI322 Critical Reading In Philosophical TextsIstinye UniversityDegree Programs Computer Engineering (English)General Information For StudentsDiploma SupplementErasmus Policy StatementNational Qualifications
Computer Engineering (English)

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Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

Course Introduction and Application Information

Course Code: UNI322
Course Name: Critical Reading In Philosophical Texts
Semester: Spring
Course Credits:
ECTS
5
Language of instruction: English
Course Condition:
Does the Course Require Work Experience?: No
Type of course: University Elective
Course Level:
Bachelor TR-NQF-HE:6. Master`s Degree QF-EHEA:First Cycle EQF-LLL:6. Master`s Degree
Mode of Delivery: E-Learning
Course Coordinator: Dr. Öğr. Üy. İBRAHİM EYLEM DOĞAN
Course Lecturer(s): İBRAHİM EYLEM DOĞAN
Course Assistants:

Course Objective and Content

Course Objectives: This course aims to improve students’ abilities in philosophical reading, thinking, and writing.
Course Content: This course aims to improve the skills of reading philosophical texts in a critical perspective, conducting philosophical research and writing argumentative philosophical texts. Seminal texts in philosophy will be selected and read along with the class. Emphasis will be given to the textual material and issues in reading and understanding. An overview of the following will be provided: The nature of the text, specificity of philosophical texts, text and context, issues in translation, interpretation and understanding.

Learning Outcomes

The students who have succeeded in this course;
1) Students will learn to read critically philosophical texts.
2) Students will learn to interpret a philosophical text by placing it in its relevant contexts.
3) Students will learn to reconstruct and critically examine the claims made by the text.
4) Students will learn to think critically about major philosophical problems.
5) Students will become familiar with the discussions about some of the major philosophical issues throughout the history of philosophy.

Course Flow Plan

Week Subject Related Preparation
1) Introduction and Conceptual Framework -
2) Spinoza 1 Selections from Tractatus Theologico-Politicus
3) Spinoza 2 Selections from Tractatus Theologico-Politicus
4) Spinoza 3 Selections from Tractatus Theologico-Politicus
5) Spinoza 4 Selections from Tractatus Theologico-Politicus
6) Nietzsche 1 Selections from Beyond Good and Evil
7) Nietzsche 2 Selections from Beyond Good and Evil
8) Midterm Exam
9) Nietzsche 3 Selections from Genealogy of Morals
10) Nietzsche 4 Selections from Genealogy of Morals
11) Scheler 1 Selections from Ressentiment
12) Scheler 2 Selections from Ressentiment
13) Scheler 3 Selections from Ressentiment
14) Scheler 4 Selections from Ressentiment

Sources

Course Notes / Textbooks: -Benedict de Spinoza, Tractatus Theologico-Politicus
-Friedrich Nietzsche, Beyond Good and Evil, Genealogy of Morals
-Friedrich Nietzsche, Genealogy of Morals
-Max Scheler, Ressentiment
References: -Benedict de Spinoza, Tractatus Theologico-Politicus
-Friedrich Nietzsche, Beyond Good and Evil, Genealogy of Morals
-Friedrich Nietzsche, Genealogy of Morals
-Max Scheler, Ressentiment

Course - Program Learning Outcome Relationship

Course Learning Outcomes

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2

3

4

5

Program Outcomes
1) Adequate knowledge in mathematics, science, and computer engineering principles, both theoretical and practical, and the ability to apply this knowledge to complex engineering problems.
2) Ability to identify, formulate, and solve complex computer engineering problems using appropriate analysis and modeling techniques.
3) Ability to design and develop complex computer systems, devices, or products that meet specific requirements and operate under realistic constraints and conditions, using modern design methods.
4) Ability to develop, select and use modern techniques and tools used for the analysis and solution of complex computer engineering problems, and the ability to use information technologies effectively.
5) Ability to plan and conduct experiments, collect and analyze data, and interpret results in the study of complex computer engineering problems or research topics.
6) Ability to work effectively within and multidisciplinary teams; individual study skills.
7) Ability to communicate effectively orally and in writing; knowledge of at least one foreign language; ability to write effective reports and understand written reports, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions.
8) Awareness of the necessity of lifelong learning; ability to access information, to follow developments in science and technology and to renew continuously.
9) To act in accordance with ethical principles, professional and ethical responsibility; information on the standards used in engineering applications.
10) Information on business practices such as project management, risk management and change management; awareness of entrepreneurship and innovation; information about sustainable development.
11) Knowledge of the effects of computer engineering practices on health, environment and safety in the universal and social scale and the problems of the era reflected in computer engineering; awareness of the legal consequences of computer engineering solutions.

Course - Learning Outcome Relationship

No Effect 1 Lowest 2 Average 3 Highest
       
Program Outcomes Level of Contribution
1) Adequate knowledge in mathematics, science, and computer engineering principles, both theoretical and practical, and the ability to apply this knowledge to complex engineering problems.
2) Ability to identify, formulate, and solve complex computer engineering problems using appropriate analysis and modeling techniques.
3) Ability to design and develop complex computer systems, devices, or products that meet specific requirements and operate under realistic constraints and conditions, using modern design methods.
4) Ability to develop, select and use modern techniques and tools used for the analysis and solution of complex computer engineering problems, and the ability to use information technologies effectively.
5) Ability to plan and conduct experiments, collect and analyze data, and interpret results in the study of complex computer engineering problems or research topics.
6) Ability to work effectively within and multidisciplinary teams; individual study skills.
7) Ability to communicate effectively orally and in writing; knowledge of at least one foreign language; ability to write effective reports and understand written reports, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions.
8) Awareness of the necessity of lifelong learning; ability to access information, to follow developments in science and technology and to renew continuously. 2
9) To act in accordance with ethical principles, professional and ethical responsibility; information on the standards used in engineering applications.
10) Information on business practices such as project management, risk management and change management; awareness of entrepreneurship and innovation; information about sustainable development.
11) Knowledge of the effects of computer engineering practices on health, environment and safety in the universal and social scale and the problems of the era reflected in computer engineering; awareness of the legal consequences of computer engineering solutions.

Assessment & Grading

Semester Requirements Number of Activities Level of Contribution
Midterms 1 % 40
Final 1 % 60
total % 100
PERCENTAGE OF SEMESTER WORK % 40
PERCENTAGE OF FINAL WORK % 60
total % 100