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The Information Technology engineering degree at CDV offers a flexible curriculum focused on programming, cloud computing, and computer networks + test

Information Technology

Choosing the right educational path often determines future career opportunities in the technology sector. Students enrolling in the Information Technology program at CDV enter a system where they can personally shape their engineering degree. This full-time, seven-semester course delivered entirely in English focuses on practical skills. It covers programming, artificial intelligence, and network administration without rigid specializations.

Table of contents

Building a customized curriculum without rigid frameworks

The curriculum design at this institution departs from traditional, fixed specializations. Instead, undergraduates receive the freedom to select subjects that align with their personal interests and professional goals. By choosing up to twelve additional modules alongside the core syllabus, each individual becomes the architect of their own study plan. This method ensures that the final profile of the graduate is shaped by their specific choices rather than a predetermined academic track.

The list of available elective modules is not static. It undergoes regular modifications to reflect shifting market trends and the evolving needs of the labor sector. Every academic year might present a slightly different set of options. For instance, someone interested in software creation might select modules focusing on Laravel framework applications, advanced object programming, and machine learning using Python. These selections directly influence the practical competencies acquired over the three and a half years of study.

Acquiring core competencies in modern software development

A significant portion of the syllabus concentrates on equipping participants with diverse programming languages. The curriculum includes instruction in Assembler, C, C++, C#, Java, Python, PHP, and JavaScript. Beyond merely writing code, undergraduates learn to utilize various tools that support broader IT processes. They also explore methods for applying artificial intelligence and object-oriented programming techniques to solve complex technical problems.

Exploring career opportunities in web and application creation

Those who direct their module choices towards software development prepare themselves for several specific roles. The acquired knowledge allows them to design graphical interfaces, build websites, and utilize cloud solutions in their projects. Consequently, graduates often find employment as mobile application developers, software testers, or database administrators. The program prepares individuals to function effectively within startups, large corporations, or creative industry enterprises.

Focusing on IT infrastructure and network security management

Another pathway available to participants involves mastering computer networks. Relevant modules cover system applications for network administrators and the basics of site reliability engineering. Through these subjects, individuals learn to build and maintain robust IT infrastructures. They configure local computer networks, administer network systems, and ensure overall digital security. Monitoring systems and managing incidents are daily tasks that students learn to handle efficiently. Managing IT projects with time and budget analysis is also covered extensively. Using structured programming methods remains a key component of this track.

Transitioning into professional network and systems administration

Concentrating on network infrastructure opens doors to distinct professional paths. Graduates who complete this specific configuration of modules typically pursue careers as IT system administrators or computer network administrators. Their skill set also qualifies them to work as network security engineers or infrastructure designers, roles that are crucial in the IT departments of virtually any industry.

Mastering cloud engineering and scalable digital solutions

The program also caters to those interested in the rapidly expanding field of cloud computing. Students can select modules such as Kubernetes fundamentals and advanced site reliability engineering. This training enables them to deploy and manage resources across platforms like Compute Engine, Google Kubernetes Engine, and Cloud Functions. Furthermore, they gain expertise in administering data storage and troubleshooting complex clusters.

Gaining practical experience through industry expert guidance

The educational model emphasizes a practical approach to learning over purely theoretical instruction. Classes are conducted by industry practitioners and professionals who bring their daily professional experience into the classroom. This ensures that the knowledge transferred is highly relevant to current industry standards. Undergraduates engage heavily in design work, completing various tasks in the format of interdisciplinary projects.

Analyzing real case studies to understand market realities

To further bridge the gap between academic learning and professional reality, the curriculum incorporates extensive use of case studies. Participants analyze real-world projects that have been successfully implemented on the market. This method provides a clear view of industry realities, challenges, and problem-solving strategies. The entire program spans 3017 hours of instruction, culminating in an Engineer's degree.

Summary of the engineering program in Information Technology

The first-cycle degree in Information Technology at CDV offers a highly customizable, English-language education over seven semesters. By allowing undergraduates to select up to twelve specialized modules, the institution provides a tailored approach to acquiring an Engineer's degree. Whether focusing on software development, network security, or cloud engineering, participants benefit from practical project work and guidance from active industry professionals.


Aptitude Test

Answer all the questions and find out if Information Technology is the right engineering path for you!

1. How do you feel about solving complex logical puzzles or mathematical problems?

2. When encountering a technical glitch in a device, what is your typical reaction?

3. Are you interested in learning how software applications and websites are built from scratch?

4. To what extent do you enjoy deconstructing a large project into smaller, manageable tasks?

5. Does the prospect of continuous learning in a rapidly evolving field sound appealing to you?

6. How would you describe your level of patience when working on a task that requires high precision?

7. Are you interested in understanding how data is stored, processed, and secured?

8. In a group setting, do you enjoy collaborating on technical solutions with others?

9. How do you feel about using English as a primary language for technical documentation?

10. What is your main motivation for considering a career in Information Technology?


published: 2026-02-26
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