This course covers the ecological framework of sustainable development; pollution environments: water, air and solid; waste treatment processes, disposal and management; government legislations, rules and regulation related to the environment and waste management; and environmental management system.
This course provides an in-depth understanding of contracts, warranties, liabilities, patents, bids, insurance, and other legal and ethical aspects essential to the professional practice of electronics engineering. It also emphasizes the importance of safety protocols and adherence to national and international engineering standards. By fostering knowledge of legal frameworks, ethical responsibility, and safety compliance, the course equips students to contribute to the development of innovative, sustainable, and legally sound engineering infrastructure, aligning with SDG 9: Industry, Innovation, and Infrastructure.
This course covers practical laboratory exercises in medical imaging and focuses on studying the principles of basic image processing operations and techniques. By applying electronics and signal processing knowledge to practical imaging systems, students are prepared to innovate within the biomedical technology sector. This aligns with SDG 9's aim to upgrade technologies and promote innovation in infrastructure and industry.
Focuses on the on the theory of 2-D Signals and systems; Image Sampling and Quantization; Image Transforms: 2-D Discrete; Fourier Transforms: 2-D Discrete Cosine Transform; Image Enhancement; Image Restoration; Image coding (JPEG, MPEG); electromagnetic spectrum, ultrasound physics, Basic Atomic and Nuclear Physics, Principles of operation of X-ray machine and film developer, computed tomography Scan, Magnetic Resonance Imaging, Positron Emission Tomography, Gamma Camera, Ultrasound Machine. Image creation and its acquisition by equipment and nuclear image
processing.

The course supports SDG 3 by equipping Electronics Engineering students with the knowledge and skills to contribute to modern healthcare technologies such as medical imaging devices (X-ray, MRI, CT, PET, Ultrasound). Mastery of these technologies directly impacts early diagnosis, accurate treatment, and improved patient care, particularly in low-resource settings.
This course deals with the different types of electronic building auxiliary systems such as voice and data, Fire Detection and Alarm System (FDAS), Public Address and Background Music (PABGM), and Closed-Circuit Television (CCTV). It includes the identification of system components and their functions, as well as the design and production of electronic layout plans based on best practices in bill of quantities (BOQ) and industry standards.
Technopreneurship is a philosophy, a way of building a career or perspective in life. The course covers the value of professional and life skills in entrepreneurial thought, investment decisions, and actions that students can utilize in starting their technology companies or executing R & D projects in companies as they start their careers. The net result is a positive outlook toward wealth creation, high value adding, and wellness in society.
This course deals with a series of lectures and seminars on selected topics that are highly relevant to
electronics engineering but are not covered in any of the formal courses. It covers recent advances in
electronics engineering. It is also a venue for the students to present their projects and research.

Decision-making; the functions of management; managing production and service operations; managing the marketing function.

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