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Characterizing the State of the Art of Human-Robot Coproduction.

, , and . ICSR, volume 9388 of Lecture Notes in Computer Science, page 135-144. Springer, (2015)

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Exploring human robot coproduction., , , and . ETFA, page 1-4. IEEE, (2014)Communicating a Task Analysis with Task Layer Maps., , and . Symposium on Designing Interactive Systems, page 346-353. ACM, (2000)Which Prototype to Augment? A Retrospective Case Study on Industrial and User Interface Design., , and . HCI (14), volume 4563 of Lecture Notes in Computer Science, page 574-583. Springer, (2007)3D hatching: linear halftoning for dual extrusion fused deposition modeling., , and . SCF, page 2:1-2:7. ACM, (2017)Editorial: Augmented Prototyping and Fabrication for Advanced Product Design and Manufacturing., and . IJAT, 13 (4): 451-452 (2019)Application-driven shape development., and . Comput. Aided Des., 42 (8): 655-656 (2010)Suited for performance: fast full-scale replication of athlete with FDM., , , and . SCF, page 17:1-17:2. ACM, (2017)Architecture through the looking glass: augmenting fabrication in the built environment., and . SCF, page 10:1-10:2. ACM, (2017)Development of a Flexible Augmented Prototyping System., , , and . WSCG, (2003)Characterizing the State of the Art of Human-Robot Coproduction., , and . ICSR, volume 9388 of Lecture Notes in Computer Science, page 135-144. Springer, (2015)