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  1. A flexible brain for AI

    Scientists at Osaka University developed a customizable computing device using nanofabricated switches than can be rewired to optimize AI applications using ...

    存在位置 Research Info / 2020
  2. How do you power billions of sensors? By converting waste heat into electricity

    Osaka University researchers found that thermoelectric power generators lose a great deal of their possible output power because of thermal and electrical ...

    存在位置 Research Info / 2020
  3. Virtual demolition

    Scientists at Osaka University show how buildings and moving objects can be virtually removed from real-time images in a process of “diminished reality.” This ...

    存在位置 Research Info / 2020
  4. Silk fibers improve bioink for 3D-printed artificial tissues and organs

    Researchers from Osaka University processed silk fibers into a versatile component of bioink for 3D cell printing technology. Printed objects retain their ...

    存在位置 Research Info / 2020
  5. Detecting early-stage failure in electric power conversion devices

    Researchers from Osaka University used acoustic emission during power cycling tests to monitor in real time the complete failure process—from the earliest ...

    存在位置 Research Info / 2020
  6. Getting single-crystal diamond ready for electronics

    Researchers from Osaka University and collaborating partners polished single-crystal diamond to near-atomic smoothness without damaging it. This will improve ...

    存在位置 Research Info / 2020
  7. Toward imperceptible electronics that you cannot see or feel

    Researchers from Osaka University fabricated transparent, ultrathin, flexible sensors with cross-aligned silver nanowire microelectronics fabricated using ...

    存在位置 Research Info / 2020
  8. Nickel phosphide nanoparticle catalyst is the full package

    Osaka University researchers prepared a nickel phosphide nanoparticle catalyst on a hydrotalcite support (nano-Ni2P/HT) that showed high activity and ...

    存在位置 Research Info / 2021
  9. Nondestructive characterization technique helps gallium nitride crystal developments

    Osaka University researchers conducted a detailed multiphoton excitation photoluminescence (MPPL) analysis of gallium nitride (GaN) semiconductor substrates. ...

    存在位置 Research Info / 2021
  10. Discovering candidate for reflex network of walking cats: Understanding animals with robots

    A group of researchers from Osaka University developed a quadruped robot platform that can reproduce the neuromuscular dynamics of animals, discovering that a ...

    存在位置 Research Info / 2021
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