ECTS - World Music Cultures
World Music Cultures (ART226) Course Detail
Course Name | Course Code | Season | Lecture Hours | Application Hours | Lab Hours | Credit | ECTS |
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World Music Cultures | ART226 | Fall and Spring | 3 | 0 | 0 | 3 | 4 |
Pre-requisite Course(s) |
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N/A |
Course Language | English |
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Course Type | Elective Courses |
Course Level | Bachelor’s Degree (First Cycle) |
Mode of Delivery | Face To Face |
Learning and Teaching Strategies | Lecture, Discussion. |
Course Lecturer(s) |
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Course Objectives | To introduce the diversity of music cultures in the world on the principles of ethnomusicology. To explain local music in connection with the technological levels, economic conditions, cultural values and traditions of societies and the interaction in the formation process of local music. |
Course Learning Outcomes |
The students who succeeded in this course;
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Course Content | The characteristics of music in the major regions of the world and its handling in the context of geographical, cultural, religious, social, economic and political factors. |
Weekly Subjects and Releated Preparation Studies
Week | Subjects | Preparation |
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1 | Music and Human, Music and Technology, the Function of Music in Society, the Positioning of World Music Cultures in Response to Western Music's Claim of 'Universality' | |
2 | General Terms of Ethnomusicology and Its Principles, Organology | |
3 | Music Culture in China | |
4 | Japanese and Korean Music Cultures | |
5 | Thai and Indian Music Cultures | |
6 | Music culture of Turkish peoples (Central Asia, Siberia, Caucasus, Balkan, Iran, Iraq and Anatolia) | |
7 | Midterm | |
8 | Arabian and Jewish Music Cultures | |
9 | Music Cultures of the Slavic Peoples (Russia, Ukraine, Belarus, Serbia, Poland, Czechia) | |
10 | Spanish, Latin American and Caribbean Music Cultures | |
11 | Music Cultures of Oceania (Australian and New Zealand indigenous peoples) | |
12 | Sub-Saharan African Music Cultures | |
13 | Western European and Balkan (Germany, UK, Italy, France, Hungary, Greece) Music Cultures | |
14 | North American (Native American, Afro-American and American Folk) Music Cultures | |
15 | General Evaluation of All Topics | |
16 | Final Assessment |
Sources
Other Sources | 1. Haviland, A. W. (ed.). (2008). Kültürel Antropoloji. İstanbul: Kaknüs Yayınları. |
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2. Hood, M (ed.). (1980). Musics of Many Cultures. Berkeley: University of California Press. | |
3. Kaplan, A. (2005). Kültürel Müzikoloji. İstanbul: Bağlam Yayıncılık. | |
4. McLean, M. (2006) Pioneers of Ethnomusicology. Florida: Llumina Press. | |
5. Myers, H. (ed.). (1993). Ethnomusicology, Historical and Regional Studies. London: MacMillan Press. | |
6. Myers, H. (ed.). (1992). Ethnomusicology. London: MacMillan Press. |
Evaluation System
Requirements | Number | Percentage of Grade |
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Attendance/Participation | 15 | 5 |
Laboratory | - | - |
Application | - | - |
Field Work | - | - |
Special Course Internship | - | - |
Quizzes/Studio Critics | - | - |
Homework Assignments | 2 | 15 |
Presentation | - | - |
Project | - | - |
Report | - | - |
Seminar | - | - |
Midterms Exams/Midterms Jury | 1 | 30 |
Final Exam/Final Jury | 1 | 50 |
Toplam | 19 | 100 |
Percentage of Semester Work | 50 |
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Percentage of Final Work | 50 |
Total | 100 |
Course Category
Core Courses | X |
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Major Area Courses | |
Supportive Courses | |
Media and Managment Skills Courses | |
Transferable Skill Courses |
The Relation Between Course Learning Competencies and Program Qualifications
# | Program Qualifications / Competencies | Level of Contribution | ||||
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1 | 2 | 3 | 4 | 5 | ||
1 | Adequate knowledge in mathematics, science and subjects specific to the aerospace engineering discipline; the ability to apply theoretical and practical knowledge of these areas to complex engineering problems. | |||||
2 | The ability to identify, define, formulate and solve complex engineering problems; selecting and applying proper analysis and modeling techniques for this purpose. | |||||
3 | The ability to design a complex system, process, device or product under realistic constraints and conditions to meet specific requirements; the ability to apply modern design methods for this purpose. | |||||
4 | The ability to develop, select and utilize modern techniques and tools essential for the analysis and determination of complex problems in aerospace engineering applications; the ability to utilize information technologies effectively. | |||||
5 | The ability to design experiments and their setups, to make experiments, gather data, analyze and interpret results for the investigation of complex engineering problems or research topics specific to the aerospace engineering discipline. | |||||
6 | The ability to work effectively in inter/inner disciplinary teams; ability to work individually. | |||||
7 | Effective oral and written communication skills in Turkish; the knowledge of at least one foreign language; the ability to write effective reports and comprehend written reports, to prepare design and production reports, to make effective presentations, to give and receive clear and understandable instructions. | |||||
8 | Recognition of the need for lifelong learning; the ability to access information and follow recent developments in science and technology with continuous self-development | X | ||||
9 | The ability to behave according to ethical principles, awareness of professional and ethical responsibility; knowledge of the standards utilized in aerospace engineering applications. | |||||
10 | Knowledge on business practices such as project management, risk management and change management; awareness about entrepreneurship, innovation; knowledge on sustainable development. | |||||
11 | Knowledge on the effects of aerospace engineering applications on the universal and social dimensions of health, environment and safety; awareness of the legal consequences of engineering solutions. | |||||
12 | Knowledge on aerodynamics, materials used in aerospace engineering, structures, propulsion, flight mechanics, stability and control, and an ability to apply these on aerospace engineering problems. | |||||
13 | Knowledge on orbit mechanics, position determination, telecommunication, space structures and rocket propulsion. |
ECTS/Workload Table
Activities | Number | Duration (Hours) | Total Workload |
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Course Hours (Including Exam Week: 16 x Total Hours) | 16 | 3 | 48 |
Laboratory | |||
Application | |||
Special Course Internship | |||
Field Work | |||
Study Hours Out of Class | 4 | 4 | 16 |
Presentation/Seminar Prepration | |||
Project | |||
Report | |||
Homework Assignments | 2 | 8 | 16 |
Quizzes/Studio Critics | |||
Prepration of Midterm Exams/Midterm Jury | 1 | 10 | 10 |
Prepration of Final Exams/Final Jury | 1 | 10 | 10 |
Total Workload | 100 |