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Quantum and Nanocomputing: Lithography and Simulation Techniques
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Molecular Transistors: Design and Simulation
Explores molecular transistors for logic computation, design, simulation, and fabrication, emphasizing interconnect parasitics and device performance.
Lithography: General Concepts and Mask Fabrication
Covers lithography concepts, mask fabrication, UV lithography, and emerging techniques.
Lithography: Nanoscale Patterning Techniques
Explores lithography fundamentals, nanofabrication challenges, and advanced patterning techniques for high-resolution production.
Designing 3-Dimensional NAND Circuits: Key Considerations
Covers the design considerations for 3-dimensional NAND circuits, focusing on transistor sizing and performance optimization.
Quantum and Nanocomputing
Covers quantum and nanocomputing, focusing on molecules as conductive elements, molecular transistors, and field coupling elements.
CMOS Circuit Design: Layout Optimization
Covers layout optimization techniques for CMOS circuit design, including common-centroid layout, MOSFET sizing, gain simulation, and performance analysis.
Reconfigurable Nanowire Electronics
Explores reconfigurable nanowire electronics, addressing challenges in CMOS technology and proposing innovative solutions for improved device performance.
Experimental Results Presentation: Tabor Experiment Analysis
Covers the analysis of experimental results from the Tabor experiment, focusing on voltage measurements and circuit design.
Advanced Nanomanufacturing: Lithography & Self-Assembly
Delves into advanced nanomanufacturing techniques, including lithography and block copolymer self-assembly for precise device fabrication.
Carbon Nanotube Circuits: Technology and Challenges
Explores the technology and challenges of carbon nanotube circuits, showcasing the first complete subsystem made of CNFETs.