ISM5211 Technology ManagementBahçeşehir UniversityDegree Programs MATHEMATICSGeneral Information For StudentsDiploma SupplementErasmus Policy StatementNational QualificationsBologna Commission
MATHEMATICS
Bachelor TR-NQF-HE: Level 6 QF-EHEA: First Cycle EQF-LLL: Level 6

Course Introduction and Application Information

Course Code Course Name Semester Theoretical Practical Credit ECTS
ISM5211 Technology Management Fall 3 0 3 12
This catalog is for information purposes. Course status is determined by the relevant department at the beginning of semester.

Basic information

Language of instruction: Turkish
Type of course: Non-Departmental Elective
Course Level: Bachelor’s Degree (First Cycle)
Mode of Delivery: Face to face
Course Coordinator : Dr. Öğr. Üyesi ALPER CAMCI
Recommended Optional Program Components: None
Course Objectives: This course is designed to lead the student to understand the importance and the nature of technological innovations, how they are integrated into business level strategies and how technological innovation process is managed. In this course, the aim is not only to understand the theories of technological innovations but also to discuss the practice of technological innovation. Therefore case studies are important; most of the theoretical parts are followed by case studies.

Learning Outcomes

The students who have succeeded in this course;
After finished this course students are expected to be able to
* develop an awareness of the scope and complexity of technological innovations and issues in management of technology.
* explain some main concepts such as types of innovation, open innovation, product life cycle; technology life cycle; dominant design; path dependency.
* understand the process of creating technological innovations
* be familiar with technological innovation strategy formulation and implementation
* develop a strategic business thinking towards the use of technology in various sectors.
* understand the tools and methods used in management of technology. Some of these tools are integrated into case analyses.

Course Content

Introduction to the management of technological innovations
Sources of innovation
Types and patterns of innovation
Technology life cycle and dominant design
Timing of entry
Integrating technology-innovation strategy to general business strategy
Internal strategy and capabilities for innovation
R&D management
Open innovation, networks and communities
Choosing innovation projects
Protecting innovations
Managing new product development process
Delivering value from innovation, commercialization, technology transfer
Technology management actions and tools

Weekly Detailed Course Contents

Week Subject Related Preparation
1) Overview of some concepts Introduction to the management of technological innovations Instructor's notes
2) Sources of technological innovation Types and patterns of innovation Instructor's notes
3) Emergence of technology standards, standards battles and dominant design Instructor's notes
4) Timing of market entry for technological innovations Instructor's notes
5) Defining organization's strategic direction Integrating technology-innovation strategy to general business strategy Instructor's notes
6) Internal strategy and capabilities for innovation R&D management Instructor's notes
7) External technology-innovation strategy: Open innovation Networks and communities, users Instructor's notes
8) Midterm exam Preparation for midterm exam
9) Choosing innovation projects Protecting innovations Instructor's notes
10) Managing creativity for technological innovations Instructor's notes
11) Managing new product development process Instructor's notes
12) Delivering value from technological innovation Commercialization, technology transfer Instructor's notes
13) Technology management actions, tools and methods Instructor's notes
14) Course project presentations Preparation for project presentations

Sources

Course Notes / Textbooks: Ders notları ve sunumları
References: Schilling, Melissa A., Strategic Management of Technological Innovation, McGraw-Hill Irwin, 2010
Frederick Betz (2010) Teknolojik Yenilik Yönetimi. TÜBİTAK Popüler Bilim Kitapları, Ankara.

Evaluation System

Semester Requirements Number of Activities Level of Contribution
Presentation 1 % 5
Project 1 % 20
Midterms 1 % 30
Final 1 % 45
Total % 100
PERCENTAGE OF SEMESTER WORK % 35
PERCENTAGE OF FINAL WORK % 65
Total % 100

ECTS / Workload Table

Activities Number of Activities Duration (Hours) Workload
Course Hours 14 3 42
Study Hours Out of Class 14 5 70
Presentations / Seminar 2 20 40
Project 1 75 75
Midterms 1 32 32
Final 1 32 32
Total Workload 291

Contribution of Learning Outcomes to Programme Outcomes

No Effect 1 Lowest 2 Low 3 Average 4 High 5 Highest
           
Program Outcomes Level of Contribution
1) To have a grasp of basic mathematics, applied mathematics and theories and applications in Mathematics
2) To be able to understand and assess mathematical proofs and construct appropriate proofs of their own and also define and analyze problems and to find solutions based on scientific methods,
3) To be able to apply mathematics in real life with interdisciplinary approach and to discover their potentials,
4) To be able to acquire necessary information and to make modeling in any field that mathematics is used and to improve herself/himself, 4
5) To be able to tell theoretical and technical information easily to both experts in detail and non-experts in basic and comprehensible way,
6) To be familiar with computer programs used in the fields of mathematics and to be able to use at least one of them effectively at the European Computer Driving Licence Advanced Level,
7) To be able to behave in accordance with social, scientific and ethical values in each step of the projects involved and to be able to introduce and apply projects in terms of civic engagement,
8) To be able to evaluate all processes effectively and to have enough awareness about quality management by being conscious and having intellectual background in the universal sense, 4
9) By having a way of abstract thinking, to be able to connect concrete events and to transfer solutions, to be able to design experiments, collect data, and analyze results by scientific methods and to interfere,
10) To be able to continue lifelong learning by renewing the knowledge, the abilities and the competencies which have been developed during the program, and being conscious about lifelong learning,
11) To be able to adapt and transfer the knowledge gained in the areas of mathematics ; such as algebra, analysis, number theory, mathematical logic, geometry and topology to the level of secondary school,
12) To be able to conduct a research either as an individual or as a team member, and to be effective in each related step of the project, to take role in the decision process, to plan and manage the project by using time effectively.