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  2. Yoshizawa–Randlett system - Wikipedia

    en.wikipedia.org/wiki/Yoshizawa–Randlett_system

    The Yoshizawa–Randlett system is a diagramming system used to describe the folds of origami models. Many origami books begin with a description of basic origami techniques which are used to construct the models. There are also a number of standard bases which are commonly used as a first step in construction.

  3. Paper fortune teller - Wikipedia

    en.wikipedia.org/wiki/Paper_fortune_teller

    A paper fortune teller may be constructed by the steps shown in the illustration below: [1] [2] The corners of a sheet of paper are folded up to meet the opposite sides and (if the paper is not already square) the top is cut off, making a square sheet with diagonal creases.

  4. Robotics - Wikipedia

    en.wikipedia.org/wiki/Robotics

    Origami inspired robots can sense and analyze in extreme environments. [2] The mechanical aspect of the robot is mostly the creator's solution to completing the assigned task and dealing with the physics of the environment around it. Form follows function. Electrical components that power and control the machinery.

  5. Poo-Chi - Wikipedia

    en.wikipedia.org/wiki/Poo-Chi

    Poo-Chi (or Poochi, Poochie), one of the first generations of robopet toys, is a robot dog designed by Samuel James Lloyd and Matt Lucas, manufactured by Sega Toys, and distributed by Tiger Toys. [1] Poo-Chi was released in 2000 and discontinued in 2002.

  6. Origami - Wikipedia

    en.wikipedia.org/wiki/Origami

    Origami tessellation is a branch that has grown in popularity after 2000. A tessellation is a collection of figures filling a plane with no gaps or overlaps. In origami tessellations, pleats are used to connect molecules such as twist folds together in a repeating fashion.

  7. Mathematics of paper folding - Wikipedia

    en.wikipedia.org/wiki/Mathematics_of_paper_folding

    Their origami-inspired robot was reported to fold itself in 4 minutes and walk away without human intervention, which demonstrated the potential for autonomous self-controlled assembly in robotics. [56] Other applications include DNA origami and RNA origami, folding of manufacturing instruments, and surgery by tiny origami robots. [57]

  8. Wikipedia:WikiProject Robotics - Wikipedia

    en.wikipedia.org/wiki/Wikipedia:WikiProject_Robotics

    Coverage of popular robots; Coverage of the current state of development, research, and software for robots of any kind: prototypes, hobbyist and educational projects, and robots used by consumers, industries and governments; Biographies of living persons related to robotics development will be placed in this WikiProject on a case-by-case basis

  9. Miura fold - Wikipedia

    en.wikipedia.org/wiki/Miura_fold

    The Miura fold is a form of rigid origami, meaning that the fold can be carried out by a continuous motion in which, at each step, each parallelogram is completely flat. This property allows it to be used to fold surfaces made of rigid materials, making it distinct from the Kresling fold and Yoshimura fold which cannot be rigidly folded and ...