Bachelor of Science in Cyber ​​Security Engineering

Cyber ​​Security Engineering is a discipline that develops solutions against cyber security threats, one of the most critical problems of the digital age, and aims to protect systems. The Cyber ​​Security Engineering Undergraduate Program is an educational program that aims to provide students with the knowledge and skills that will enable them to specialize in the field of cyber security.

This program teaches students information systems, network security, and methods for dealing with cyber threats. It also focuses on topics such as detection of security vulnerabilities, attack detection and prevention systems, encryption techniques, and cyber security management.

Program Purpose

The Cyber ​​Security Engineering Undergraduate Program aims to enable students to gain competence in the following subjects:

Theoretical and Technical Knowledge: Understanding information security principles, cryptography, and security protocols.

Practical Applications: Analyzing cyber attack scenarios, identifying security vulnerabilities, and developing defense mechanisms.

Problem Solving: Solving complex cyber security problems and developing innovative solutions.

Ethics and Law: Adopting ethical principles in cyber security and mastering relevant legal regulations.

Sectoral Preparation: Being able to respond to cyber security needs in various sectors.

Course Contents

Some of the basic courses in the program are as follows:

Mathematics and Statistics: Probability theory, number theory, data analysis.

Computer Science Fundamentals: Data structures, algorithms, network protocols.

Cyber ​​Security Fundamentals: Encryption algorithms, security protocols, vulnerability analysis.

Attack and Defense Techniques: Penetration testing, intrusion prevention systems (IPS), firewalls.

Computer Forensics and Law: Cybercrimes and legal regulations, digital evidence collection.

Project and Practice: Applied work on real-world cyber security projects.

A student who graduates from the Cyber ​​Security Engineering Undergraduate Program will receive a "bachelor's degree". This degree indicates the level and quality of the educational program the student has completed. A bachelor's degree is usually awarded after completing a four-year program at a university and indicates that the student has a broad knowledge of the field in which he or she is studying.

The Cyber ​​Security Engineering Undergraduate Program offers comprehensive training that aims to train individuals who are experts in preventing, detecting and resolving cyber threats and security vulnerabilities. This program allows students to gain both technical and strategic competencies.

General Profile of the Program

Interdisciplinary Approach: The program offers a broad perspective by bringing together fields such as computer engineering, information security, cryptography and law.

Applied Education: In addition to theoretical knowledge, learning is supported by applied laboratory studies, simulations and real-world projects.

Ethical and Legal Awareness: The program provides the ability to develop cyber security applications and act in accordance with legal regulations while adhering to ethical values.

Technological and Current Approaches: New generation threats, defense techniques and tools are discussed to adapt to rapidly developing technology.

Program Basic Learning Areas

Basic Computer Science and Engineering:

Algorithms and data structures

Computer networks and internet protocols

Software engineering and programming languages

Cyber ​​Security Fundamentals:

Analysis and prevention of security vulnerabilities

Cryptographic algorithms and protocols

Cyber ​​threat modeling and risk analysis

Applied Cyber ​​Security:

Penetration testing and ethical hacking

Network security and firewalls

Cyber ​​attack detection and incident response

Advanced Security Applications:

Cloud security

IoT security

Security with artificial intelligence and machine learning

Legal and Ethical Issues:

Cyber ​​crimes and legal regulations

Digital evidence collection and forensic computing

Ethical rules and responsibilities in cyber security

Target Student Profile

Interested in information technologies and the digital world,

Advanced analytical thinking and problem solving skills,

Emphasizing ethical values,

Innovative individuals who are open to continuous learning.

The Cyber ​​Security Engineering Undergraduate Program is an ideal option for students who want to specialize in meeting the security needs of the digital world. This program offers graduates the opportunity to gain a profession that is in high demand both nationally and internationally.

Competencies to be Acquired

Students who successfully complete the program will have the following competencies:
Technical Expertise: Design, implement and optimize effective security solutions against cyber threats.
Analytical Thinking: Develop innovative and applicable solutions by analyzing complex security problems.
Applied Skills: Use various security tools and quickly adapt to new technologies.
Communication and Leadership: Prepare technical reports, conduct teamwork and lead cybersecurity projects.
Ethical Consciousness and Legal Awareness: Implement security practices in accordance with ethical rules and within the legal framework.


Career Opportunities

Cyber ​​Security Engineering graduates can assume various roles in the following sectors:
Information technology (IT) companies
Public institutions and defense industry
Banking and finance sector
Telecommunications
Research and development (R&D) laboratories
Private security consulting firms

Cybersecurity Engineering graduates have a wide range of employment opportunities in a world where digital security needs are rapidly increasing. They can work in public institutions, private sector and international companies, as well as find career opportunities in areas such as entrepreneurship and consultancy. Below are the main areas and potential roles where graduates can work:

1. Information Technologies (IT) and Telecommunications Companies

Network Security Specialist: Secures the network infrastructures of institutions and establishes defense mechanisms against attacks.

Cyber ​​Security Engineer: Works on the detection of cyber threats, analysis and prevention of security vulnerabilities.

Cyber ​​Incident Response Specialist: Provides rapid response to cyber attacks and minimizes damage.

2. Defense Industry

Cyber ​​Security Specialist: Develops defense mechanisms against cyber attacks that threaten national security.

Cryptology Specialist: Designs encryption and data security mechanisms used in defense systems.

Computer Forensics Specialist: Collects and analyzes evidence in the investigation of digital crimes.

3. Banking and Finance Sector

Information Security Specialist: Ensuring the security of financial transactions and protecting customer data.

Risk Analyst: Provides solutions by analyzing the financial risks of cyber threats.

Compliance and Audit Specialist: Implements security protocols in accordance with legal and regulatory requirements.

4. Private Security Consulting Firms

Ethical Hacker (White Hat Hacker): Identifies security vulnerabilities in systems and takes corrective measures.

Penetration Test Specialist: Measures security levels by conducting controlled cyber attacks on systems.

Cyber ​​Security Consultant: Develops and guides specific security strategies for institutions.

5. Research and Development (R&D)

Threat Analyst: Develops defense methods by analyzing emerging cyber threats.

Artificial Intelligence and Security Specialist: Researches and implements AI-based security systems.

New Technology Developer: Designs innovative security solutions for IoT, cloud and mobile devices.

6. International Companies and Organizations

Cyber ​​Security Manager: Manages cyber security projects and operations at a global level.

Security Policy Specialist: Determines companies' security policies and standards.

International Security Researcher: Prepares reports by analyzing global threat trends.

7. Entrepreneurship

Security Technology Entrepreneur: Can establish start-ups that develop new generation security software and tools.

Consultancy Services: Provides cybersecurity strategies and solutions to institutions.

8. Academic and Educational Institutions

Researcher: Works on cybersecurity at universities or research centers.

Trainer: Organizes cybersecurity training and trains next generation experts.

Future Perspective

Increasing Demand: With the acceleration of digitalization and the increase in cyber threats, the need for cybersecurity experts is increasing day by day.

International Work Opportunities: Since cybersecurity is an international field, graduates can find the opportunity to work abroad.

Competitive Salaries: Since it is a field that requires high demand and expertise, cybersecurity experts usually earn competitive salaries in the sector.

Cybersecurity Engineering graduates form the cornerstones of security in the digital world and are among the indispensable professionals of the technological age.

The student's success in the courses is determined by evaluating the mid-term grades and the final exam grade together.

Mid-term grades consist of quizzes, mid-term exam grades and grades given to homework, applications and practical work depending on the course. In the credit system, the type and weight of mid-term and final evaluations (exams, homework, applications and similar) are reported to the relevant department head by the instructor teaching the course within the first two weeks of the semester and announced to the students by the relevant teaching unit administration. The final evaluation is determined by the instructor teaching the course with one of the following letter grades, taking into account the general success level of all students taking that course.

While the impact of the homework given during the semester on the final grade is 40%, the impact of the final exams at the end of the semester is 60%.

The student must have passed all compulsory and elective courses in the program and must not have a grade of F1, F2 or Z. In this program, the student must have a minimum of 240 ECTS credits and a general grade point average of at least 2.00 out of 4.00.