Jewelry Design (ART266) Course Detail

Course Name Course Code Season Lecture Hours Application Hours Lab Hours Credit ECTS
Jewelry Design ART266 Fall and Spring 3 0 0 3 4
Pre-requisite Course(s)
N/A
Course Language Turkish
Course Type Elective Courses
Course Level Bachelor’s Degree (First Cycle)
Mode of Delivery Face To Face
Learning and Teaching Strategies Lecture, Discussion, Drill and Practice.
Course Coordinator
Course Lecturer(s)
Course Assistants
Course Objectives Design preparation, metal and different material shaping and rolling; techniques, application using different materials, basic design information.
Course Learning Outcomes The students who succeeded in this course;
  • Knowledge of the techniques related to jewelry production.
Course Content Shape elements, point-line-surface relation, drawing techniques, form-shape, measure-ratio, light-dark, shadow-light, volume information, texture types and touch; hand tools; production using simple modeling techniques; cutting and leveling techniques, assembly and skidding procedures; design preparation, metal and different material shaping and

Weekly Subjects and Releated Preparation Studies

Week Subjects Preparation
1 The first jewelry in prehistoric times, ancient Egyptian jewelry, jewelry art in Mesopotamia and Hittites. Greek (ancient Greek) jewelry art, Roman and Byzantine jewelry art
2 The art of jewelry in Turks-Göktürk. Uighur-Hunter art of jewelry. Seljuk and Anatolian jewelry, Ottoman jewelry art.
3 Geometric drawings, expansion of shapes in three dimensional system
4 Projection and drawing methods
5 Gaining the Competencies to Draw Designs
6 Tools and materials presentation and decoration techniques
7 By giving three-dimensional form; Preparing models from design
8 Midterm
9 Basic information on negative mold taking
10 Döküm öncesi ve sonrası işlemler
11 Basic information about positive dies casting
12 Mixed technical material design
13 Mixed technical material design
14 Basic information about retouching
15 Making original designed jewelry
16 Final Assessment

Sources

Other Sources 1. Köroğlu, G. (2004). Anadolu Uygarlıklarında Takı. İstanbul: Türk Eskiçağ Bilimleri Enstitüsü Yayınları.
2. Türe, A. (2005). Takının Öyküsü: Dünya Kuyumculuk Tarihi 1. İstanbul: Goldaş Kültür Yayınları.

Evaluation System

Requirements Number Percentage of Grade
Attendance/Participation 15 10
Laboratory - -
Application 3 40
Field Work - -
Special Course Internship - -
Quizzes/Studio Critics - -
Homework Assignments - -
Presentation 3 20
Project - -
Report - -
Seminar - -
Midterms Exams/Midterms Jury - -
Final Exam/Final Jury 1 30
Toplam 22 100
Percentage of Semester Work 70
Percentage of Final Work 30
Total 100

Course Category

Core Courses X
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
1 2 3 4 5
1 Applies knowledge in mathematics, science, and computing to solve engineering problems related to manufacturing technologies.
2 Analyzes and identifies problems specific to manufacturing technologies.
3 Develops an approach to solve encountered engineering problems, and designs and conducts models and experiments.
4 Designs a comprehensive manufacturing system (including method, product, or device development) based on the creative application of fundamental engineering principles, within constraints of economic viability, environmental sustainability, and manufacturability.
5 Selects and uses modern techniques and engineering tools for manufacturing engineering applications.
6 Effectively uses information technologies to collect and analyze data, think critically, interpret, and make sound decisions.
7 Works effectively as a member of multidisciplinary and intra-disciplinary teams or individually; demonstrates the confidence and necessary organizational skills.
8 Communicates effectively in both spoken and written Turkish and English.
9 Engages in lifelong learning, accesses information, keeps up with the latest developments in science and technology, and continuously renews oneself.
10 Demonstrates awareness and a sense of responsibility regarding professional, legal, ethical, and social issues in the field of Manufacturing Engineering.
11 Effectively utilizes resources (personnel, equipment, and costs) to enhance national competitiveness and improve manufacturing industry productivity; conducts solution-oriented project and risk management; and demonstrates awareness of entrepreneurship, innovation, and sustainable development.
12 Considers the health, environmental, social, and legal consequences of engineering practices at both global and local scales when making decisions.

ECTS/Workload Table

Activities Number Duration (Hours) Total Workload
Course Hours (Including Exam Week: 16 x Total Hours) 16 3 48
Laboratory
Application 3 7 21
Special Course Internship
Field Work
Study Hours Out of Class 4 3 12
Presentation/Seminar Prepration 3 4 12
Project
Report
Homework Assignments
Quizzes/Studio Critics
Prepration of Midterm Exams/Midterm Jury
Prepration of Final Exams/Final Jury 1 7 7
Total Workload 100