This section presents a collection of collaborative research projects developed within the Design Technology program at Cornell University's College of Architecture, Art, and Planning (AAP). Grounded in an interdisciplinary research framework, these works investigate the convergence of artificial intelligence, computational design, electronic sensing, robotic fabrication, and digital manufacturing, exploring how emerging technologies can redefine the relationship between design, computation, material, and construction. Across diverse research topics, my work emphasizes the integration of computational thinking with physical fabrication, extending architectural practice beyond conventional design methodologies. Rather than treating design, analysis, fabrication, and interaction as isolated processes, these projects seek to establish adaptive workflows in which digital computation, environmental sensing, robotic control, and intelligent decision-making operate as an interconnected system. Through experimentation across multiple scales and technological domains, they investigate new methods of designing, fabricating, and interacting with the built environment. Collectively, these explorations reflect my broader interest in computational design, robotic fabrication, artificial intelligence, and autonomous systems. They represent an ongoing effort to develop new design methodologies in which architecture evolves from a static product into an adaptive, intelligent, and continuously responsive process driven by the integration of computation, sensing, and fabrication.