COMPUTER EDUCATION AND INSTRUCTIONAL TECHNOLOGIES | |||||
Bachelor | TR-NQF-HE: Level 6 | QF-EHEA: First Cycle | EQF-LLL: Level 6 |
Course Code | Course Name | Semester | Theoretical | Practical | Credit | ECTS |
GEP0809 | Strategic Roadmaps and Innovation | Spring | 3 | 0 | 3 | 4 |
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. Öğr. Üyesi AHMET NACİ ÜNAL |
Course Lecturer(s): |
Dr. Öğr. Üyesi AHMET NACİ ÜNAL |
Recommended Optional Program Components: | N/A |
Course Objectives: | This course is an introduction of the concepts of strategy, strategic management, strategic roadmaps, innovation, technology management, technology foresight, and technology forecast. The definitions and the techniques of strategy, innovation, strategic management, strategic roadmaps, technology management, technology forecast, and technology foresight will be discussed with simple applications. |
The students who have succeeded in this course; •Understanding the Concepts of Strategy, Innovation, Strategic Management and Strategic Roadmaps •Learning the Steps of Strategic Management; •Recognizing The Types of Strategic Thinking •Preparing and Presenting Strategic Roadmaps • Learning about the Technology management, technology forecast, and technology foresight. |
Strategy, Strategic Management, Innovation, Strategic Roadmaps, Technology Management, Technology Forecast, and Technology Foresight. |
Week | Subject | Related Preparation |
1) | Introduction | Lecturer Notes. |
2) | Strategy, Strategic Management, Innovation and General Concepts | YARMAN B.S.B., ÜNAL A.N., “Stratejik Karar Verme Boyutunda Bilgi Toplama/İşleme Amaçlı Karar Destek Sitemleri”, Nobel Yayıncılık, 2015. |
3) | Strategic Management | T. Çiftçi, Stratejik Yönetim Cep Kitabı, İSO Yayınları, 2011. |
4) | Intelligence Science and Strategy | YARMAN B.S.B., ÜNAL A.N., “Stratejik Karar Verme Boyutunda Bilgi Toplama/İşleme Amaçlı Karar Destek Sitemleri”, Nobel Yayıncılık, 2015. |
5) | Management and Management Functions | Lecturer Notes |
6) | Decision Making and Decision Theory | YARMAN B.S.B., ÜNAL A.N., “Stratejik Karar Verme Boyutunda Bilgi Toplama/İşleme Amaçlı Karar Destek Sitemleri”, Nobel Yayıncılık, 2015. |
7) | Decision Making and Decision Theory | YARMAN B.S.B., ÜNAL A.N., “Stratejik Karar Verme Boyutunda Bilgi Toplama/İşleme Amaçlı Karar Destek Sitemleri”, Nobel Yayıncılık, 2015. |
8) | Decision Making and Decision Theory | YARMAN B.S.B., ÜNAL A.N., “Stratejik Karar Verme Boyutunda Bilgi Toplama/İşleme Amaçlı Karar Destek Sitemleri”, Nobel Yayıncılık, 2015. |
9) | Case Study | Lecturer Notes |
10) | Technology Management | Lecturer Notes |
11) | Technology Forecast and Technology Foresight | Lecturer Notes |
12) | Strategy Development Tools | Lecturer Notes |
13) | Strategy Development Process | Lecturer Notes |
14) | Cyberspace, Strategy and Innovation | ÜNAL A.N., “Siber Güvenlik ve Elektronik Bileşenleri”, Nobel Yayıncılık, 2015. |
15) | Final Exam | |
16) | Final Exam |
Course Notes / Textbooks: | YARMAN B.S.B., ÜNAL A.N., “Stratejik Karar Verme Boyutunda Bilgi Toplama/İşleme Amaçlı Karar Destek Sitemleri”, Nobel Yayıncılık, 2015. T. Çiftçi, Stratejik Yönetim Cep Kitabı, İSO Yayınları, 2011. T. Çiftçi, Stratejik Yönetim Cep Kitabı, İSO Yayınları, 2011. ÜNAL A.N., “Siber Güvenlik ve Elektronik Bileşenleri”, Nobel Yayıncılık, 2015. |
References: | T. Çiftçi vd. Yeni İş Geliştirme, İSO Yayınları, 2004. T. Çiftçi, Üç Adımda Stratejik Yönetim, İSO Yayınları, 2010. A. Sungur vd. Sanayide Özdeğerlendirme, İSO Yayınları, 2011. U. Tiryakioğlu vd. Yeni Ürün ve Tesis Yatırımlarında Fizibilite, İSO Yayınları, 2011. M.Porter, Rekabet Stratejisi, Sistem Yayıncılık, 2000. P.Schwarts, The Art of Long View, Doubleday Currency 1996. |
Semester Requirements | Number of Activities | Level of Contribution |
Attendance | 1 | % 15 |
Homework Assignments | 1 | % 10 |
Midterms | 1 | % 15 |
Final | 1 | % 60 |
Total | % 100 | |
PERCENTAGE OF SEMESTER WORK | % 40 | |
PERCENTAGE OF FINAL WORK | % 60 | |
Total | % 100 |
Activities | Number of Activities | Duration (Hours) | Workload |
Course Hours | 14 | 3 | 42 |
Study Hours Out of Class | 14 | 1 | 14 |
Presentations / Seminar | 1 | 10 | 10 |
Homework Assignments | 14 | 1 | 14 |
Midterms | 1 | 10 | 10 |
Final | 1 | 10 | 10 |
Total Workload | 100 |
No Effect | 1 Lowest | 2 Low | 3 Average | 4 High | 5 Highest |
Program Outcomes | Level of Contribution | |
1) | To define concepts related to the latest knowledge, tools and other scientific resources for the teaching profession, educational technology and information technologies in terms of national and international standards. | 4 |
2) | To explain the main elements of teaching strategies, methods and techniques, material design and assessment and evaluation processes that affect the development of educational technology integration. | |
3) | To develop competencies related to software languages, operating systems, computer networks and computer hardware. | |
3) | To use the most appropriate curriculum frameworks to plan lessons and activities based on active and student-centered learning integrated with technology. | |
4) | To use the most appropriate curriculum frameworks to plan lessons and activities based on active and student-centered learning integrated with technology. | |
5) | To plan, implement and evaluate classroom activities that utilize cutting-edge technologies to foster creativity, problem solving and critical thinking using scientific methods. | |
6) | To build strong theoretical and applied models to develop solutions to problems that focus on systems and human development within a learning organization. | 4 |
7) | To review, evaluate and recommend strategies for technology integration based on the interests, needs, individual differences and developmental characteristics of students in primary and secondary education. | |
8) | To work individually and collaboratively in a team to carry out activities related to educational technology, information technology and the teaching profession in an interdisciplinary approach. | 4 |
9) | To effectively use and evaluate educational technologies and appropriately designed instructional models as a means of achieving and meeting learning objectives and requirements. | |
10) | To utilize effective metacognitive techniques to make the classroom a community of learners engaged in lifelong learning activities. | |
11) | To prepare trainings and projects related to educational technology for the community and to provide counseling to individuals in enhancing learning through the appropriate use of technology. | 4 |
12) | To implement cost and time sensitive strategies to support individuals and organizations to carry out their work more effectively. | |
13) | To equip teachers to be pioneers and models in the application of technology for educational purposes using ethical and legal standards and to keep pace with changing technology. | |
14) | To investigate efficient design solutions and existing standards used today for educational technologies, curricula, innovations and outcomes related to work, school, education sector and virtual world. | |
15) | To gain fluency in interpersonal communication, teaching frameworks and the use of different technologies in relation to national norms and laws. | 4 |