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CurveBoards Demo: Integrating Breadboards into Physical Objects to Prototype Function in the Context of Form.

, , , , , , , , and . CHI Extended Abstracts, page 1-4. ACM, (2020)

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ElectroVoxel: Electromagnetically Actuated Pivoting for Scalable Modular Self-Reconfigurable Robots., , , , and . ICRA, page 4254-4260. IEEE, (2022)Selective Self-Assembly using Re-Programmable Magnetic Pixels., , , , and . IROS, page 12659-12666. IEEE, (2022)Mixels: Fabricating Interfaces using Programmable Magnetic Pixels., , , , , , and . UIST, page 8:1-8:12. ACM, (2022)CompuMat: A Computational Composite Material for Tangible Interaction., , and . TEI, page 49:1-49:5. ACM, (2023)PullupStructs: Digital Fabrication for Folding Structures via Pull-up Nets., , , and . TEI, page 52:1-52:6. ACM, (2023)CurveBoards: Integrating Breadboards into Physical Objects to Prototype Function in the Context of Form., , , , , , , , and . CHI, page 1-13. ACM, (2020)An Approach Based on Particle Swarm Optimization for Inspection of Spacecraft Hulls by a Swarm of Miniaturized Robots., , , , , , , and . ANTS Conference, volume 13491 of Lecture Notes in Computer Science, page 14-27. Springer, (2022)ElectroVoxel: Electromagnetically Actuated Pivoting for Scalable Modular Self-Reconfigurable Robots., , , , and . CoRR, (2022)CompuMat: A Computational Composite Material for Tangible Interaction., , and . CoRR, (2022)Programmable Polarities: Actuating Interactive Prototypes with Programmable Electromagnets., , , , and . UIST (Adjunct Volume), page 121-123. ACM, (2021)