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Courses
Universal Design is a proactive approach to creating products and environments that are inherently accessible to the widest range of users, including those with disabilities, from the outset.
Design and analysis of algorithms is a field of computer science focused on creating efficient and effective problem-solving procedures (algorithms) and analyzing their performance. It involves understanding how to develop algorithms that are both correct and optimal in terms of time and space complexity
Design and analysis of algorithms is a field of computer science focused on creating efficient and effective problem-solving procedures (algorithms) and analyzing their performance.
Building planning and computer-aided civil engineering drawing (CAD) are fundamental aspects of civil engineering, enabling the creation of efficient, safe, and sustainable structures and infrastructure. This guide explores these concepts in detail, highlighting their importance and applications in the construction industry.
Sustainable and Green Construction is an evolving discipline in civil engineering and the built environment that focuses on designing, constructing, operating, and maintaining buildings and infrastructure in ways that minimize adverse environmental impacts, conserve resources, and promote occupant health and well-being. This subject integrates principles of sustainability into the construction lifecycle—from material selection and energy efficiency to water management and indoor environmental quality.
Structural Design-II is an advanced subject in civil and structural engineering focusing on the analysis, design, and detailing of complex structural elements and systems in buildings and infrastructure. Building on foundational design concepts, this course emphasizes the application of relevant codes and standards to the structural design of reinforced concrete and steel members under various loading conditions, including gravity, wind, and seismic forces.
This course introduces students to the fundamentals and advanced techniques of computer-aided design (CAD) and analysis. It focuses on the geometric modeling of components, assemblies, and systems using modern CAD software. Emphasis is placed on the integration of Finite Element Analysis (FEA) tools for stress, thermal, and dynamic simulations to predict real-world behavior of mechanical parts and assemblies. Students will gain practical skills in 2D drafting, 3D modeling, meshing, and result interpretation, preparing them for design validation and optimization in engineering applications.
This course focuses on designing electronic circuits with testability in mind. Students will explore strategies for enhancing testing efficiency during manufacturing and operation. Topics include built-in self-test (BIST), scan chains, fault modeling, and testability considerations. Through theory, hands-on projects, and industry tools, students will develop skills to create robust, testable electronic systems
This course explores Electronics System Design, focusing on VHDL, Verilog, and FPGA technologies. Students will gain knowledge of hardware description languages, digital system design principles, and FPGA implementation. The course includes hands-on lab work, simulations, and projects to provide practical experience in system design.
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