The key outcomes include:
Understanding how programming is essential in embedded systems, circuit simulation, automation, and hardware-software co-design.
Recognizing the integration of programming with microcontrollers, FPGA development, and real-time systems.
Learning about real-world applications of programming in electronics and wireless communication.
Exposure to industry trends, tools, and technologies used in professional settings.
Gaining insights into essential programming languages (C, Python, Verilog, etc.) for electronics engineering.
Understanding debugging techniques, optimization strategies, and best coding practices.
Learning about career opportunities in embedded systems, IoT, VLSI design, and wireless communication.
Encouragement to develop programming proficiency to stay competitive in the evolving tech landscape.
Engaging with an industry expert through real-time Q&A.
Gaining practical advice on transitioning from academic learning to industry applications.
KPRIET – An AI Integrated Campus
Preparing future-ready engineers with AI-integrated teaching and learning. KPRIET integrates Artificial Intelligence across teaching, learning, research and innovation to create a smarter, future-ready campus experience for students and faculty.