FACULTY OF ARTS AND SCIENCES

Department of Mathematics

GEAR 301 | Course Introduction and Application Information

Course Name
Introduction to Arts and Drawing
Code
Semester
Theory
(hour/week)
Application/Lab
(hour/week)
Local Credits
ECTS
GEAR 301
Fall/Spring
3
0
3
6

Prerequisites
None
Course Language
English
Course Type
Service Course
Course Level
First Cycle
Mode of Delivery -
Teaching Methods and Techniques of the Course Discussion
Q&A
Critical feedback
Lecture / Presentation
Course Coordinator
Course Lecturer(s)
Assistant(s) -
Course Objectives The objective of this course is to introduce essential aspects of art history and to develop students’ basic drawing techniques.
Learning Outcomes The students who succeeded in this course;
  • will be able to classify the basic elements of art.
  • will be able to draw by free hand.
  • will be able to define important figures in art history with an aesthetic sensitivity.
  • will be able to discuss important events in art history with a critical perspective.
  • will be able to classify the essential tools and materials for basic drawing exercises.
Course Description This course introduces the basic techniques of drawing and freehand drawing skills. Moreover, it also provides information about important figures and events in art history.

 



Course Category

Core Courses
Major Area Courses
Supportive Courses
Media and Management Skills Courses
Transferable Skill Courses

 

WEEKLY SUBJECTS AND RELATED PREPARATION STUDIES

Week Subjects Related Preparation
1 Introduction
2 Elements of Art / Basic Drawing: Line Mendelowitz, D.M., Faber D.L., Wakeham D.A., (2007). A Guide to Drawing, Thomson Wadsworth, USA, pp. 4-12 Ching,F.D.K., “Design Drawing”, John Wiley & Sons, Inc. (1998) Chapter 1 Line & Shape Drawing Pencils (B series)
3 Elements of Art / Basic Drawing: Line Ching,F.D.K., “Design Drawing”, John Wiley & Sons, Inc. (1998) Chapter 2 Tone and Texture Drawing Pencils (B series)
4 Elements of Art / Basic Drawing: Line Ching,F.D.K., “Design Drawing”, John Wiley & Sons, Inc. (1998) Chapter 1 Line & Shape Drawing Pencils (B series)
5 Elements of Art / Basic Drawing: Volume Ching,F.D.K., “Design Drawing”, John Wiley & Sons, Inc. (1998) Chapter 3 Form and structure Drawing Pencils (B series)
6 Elements of Art / Basic Drawing: Volume and Color/ Quiz/Studio Critique Ching,F.D.K., “Design Drawing”, John Wiley & Sons, Inc. (1998) Chapter 4 Space & Depth Ching,F.D.K., “Design Drawing”, John Wiley & Sons, Inc. (1998) Chapter 11 Drawing Composition Drawing Pencils (B series)
7 Elements of Art / Basic Drawing: Volume and Color Drawing Pencils (B series)
8 Elements of Art / Basic Drawing: Volume and Color Drawing Pencils (B series)
9 Elements of Art
10 Presentations
11 Presentations
12 Presentations
13 Midterm
14 Drawing Drawing Pencils (B series)
15 Semester Review
16 Semester Review

 

Course Notes/Textbooks
Suggested Readings/Materials

Mendelowitz, D.M., Faber D.L., Wakeham D.A., (2007). A Guide to Drawing, Thomson Wadsworth, USA, ISBN-13: 978-0-495-00694-7

Hogarth, B., (1988). Drawing Dynamic Hands, Watson-Guptill Publications, New York, ISBN: 0-8320-1368-5

Winslow, V. L., (2009). Classic Human Anatomy,  Watson-Guptill Publications, New York, ISBN-13: 978-0-8230-2415-5

Betti, C., (1996). Drawing: a Contemporary Approach, Harcourt Brace College Publishers, USA, ISBN 0-15-501580-X

Ching,F.D.K., (1998) Design Drawing, John Wiley & Sons, Inc., Canada, ISBN: 0-471-28654-0

 

EVALUATION SYSTEM

Semester Activities Number Weigthing
Participation
Laboratory / Application
Field Work
Quizzes / Studio Critiques
1
10
Portfolio
Homework / Assignments
1
20
Presentation / Jury
1
35
Project
Seminar / Workshop
Oral Exams
Midterm
1
35
Final Exam
Total

Weighting of Semester Activities on the Final Grade
4
100
Weighting of End-of-Semester Activities on the Final Grade
Total

ECTS / WORKLOAD TABLE

Semester Activities Number Duration (Hours) Workload
Theoretical Course Hours
(Including exam week: 16 x total hours)
16
3
48
Laboratory / Application Hours
(Including exam week: '.16.' x total hours)
16
0
Study Hours Out of Class
14
3
42
Field Work
0
Quizzes / Studio Critiques
1
10
10
Portfolio
0
Homework / Assignments
1
25
25
Presentation / Jury
1
30
30
Project
0
Seminar / Workshop
0
Oral Exam
0
Midterms
1
25
25
Final Exam
0
    Total
180

 

COURSE LEARNING OUTCOMES AND PROGRAM QUALIFICATIONS RELATIONSHIP

#
Program Competencies/Outcomes
* Contribution Level
1
2
3
4
5
1

To be able to have a grasp of basic mathematics, applied mathematics or theories and applications of statistics.

2

To be able to use advanced theoretical and applied knowledge, interpret and evaluate data, define and analyze problems, develop solutions based on research and proofs by using acquired advanced knowledge and skills within the fields of mathematics or statistics.

3

To be able to apply mathematics or statistics in real life phenomena with interdisciplinary approach and discover their potentials.

4

To be able to evaluate the knowledge and skills acquired at an advanced level in the field with a critical approach and develop positive attitude towards lifelong learning.

5

To be able to share the ideas and solution proposals to problems on issues in the field with professionals, non-professionals.

6

To be able to take responsibility both as a team member or individual in order to solve unexpected complex problems faced within the implementations in the field, planning and managing activities towards the development of subordinates in the framework of a project.

7

To be able to use informatics and communication technologies with at least a minimum level of European Computer Driving License Advanced Level software knowledge.

8

To be able to act in accordance with social, scientific, cultural and ethical values on the stages of gathering, implementation and release of the results of data related to the field.

9

To be able to possess sufficient consciousness about the issues of universality of social rights, social justice, quality, cultural values and also environmental protection, worker's health and security.

10

To be able to connect concrete events and transfer solutions, collect data, analyze and interpret results using scientific methods and having a way of abstract thinking.

11

To be able to collect data in the areas of Mathematics or Statistics and communicate with colleagues in a foreign language.

12

To be able to speak a second foreign language at a medium level of fluency efficiently.

13

To be able to relate the knowledge accumulated throughout the human history to their field of expertise.

*1 Lowest, 2 Low, 3 Average, 4 High, 5 Highest

 


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