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Academic Syllabus
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Academic Syllabus

Structured Curriculum for Excellence in Engineering Education

Curriculum Framework at CRIT

The syllabus at CRIT is designed in alignment with university regulations and industry standards. It ensures a balanced focus on theoretical knowledge, practical skills, research exposure, and professional development, preparing students to excel in their chosen engineering disciplines.

Department-wise Syllabus

Select your department and regulation to browse the syllabus

Course Structure Summary

A structured academic framework designed to balance theory, practical learning, and industry exposure.

160

Total Program Credits

24

Core Subjects

8

Professional Electives

12

Laboratory Courses

Mini & Major

Project Work

VI / VII

Industry Internship

Open & Professional Electives

Explore interdisciplinary courses to broaden your expertise

Artificial Intelligence & Machine Learning

Study intelligent systems, machine learning algorithms, and data-driven technologies used in modern software and automation industries.

Cyber Security

Learn network security, cryptography, ethical hacking, and digital protection strategies to safeguard modern information systems.

Internet of Things (IoT)

Explore embedded systems, smart devices, and connected technologies used in automation, smart homes, and industrial applications.

Renewable Energy Systems

Understand sustainable energy technologies including solar, wind, and hybrid power systems for environmentally responsible engineering.

Program Learning Outcomes

Key competencies and skills students develop through the structured engineering curriculum.

Students gain a solid foundation in mathematics, science, and core engineering concepts required to solve real-world technical problems.
The curriculum develops analytical thinking and problem-solving abilities through practical labs, projects, and technical assignments.
Students acquire practical knowledge in emerging technologies, modern tools, and engineering practices demanded by the industry.
Encourages students to engage in research activities, technical projects, and innovative solutions to address engineering challenges.
Group projects, seminars, and presentations help students build teamwork, leadership, and professional communication skills.

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