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Team 5000 IronBob

Team 5000 IronBob

10th Applied Innovation Camp Final Presentation

Kent Yang

July 20, 2013
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  1. Why Spongebob? Porosity - Low density - High permeability -

    High absorbability - Large surface area - Hydrogen storage
  2. Improvement Coating A coating is a covering that is applied

    to the surface of an object, usually referred to as the substrate.
  3. Improvement Fuel cell A fuel cell is a device that

    converts the chemical energy from a fuel into electricity through a chemical reaction with oxygen or another oxidizing agent.
  4. Improvement Magnetic properties Earth's magnetic field (also known as the

    geomagnetic field) is the magnetic field that extends from the Earth's inner core to where it meets the solar wind, a stream of energetic particles emanating from the Sun.
  5. Improvement Bernoulli's principle In fluid dynamics, Bernoulli's principle states that

    for an inviscid flow, an increase in the speed of the fluid occurs simultaneously with a decrease in pressure or a decrease in the fluid's potential energy.
  6. Pros& Cons - high speed - ability to fly -

    energy self-sufficient - recharge problem - hard to radiate - expensive Advantages Disadvantages
  7. References • POROUS MATERIALS EMBEDDED WITH NANOPARTICLES, METHODS OF FABRICATION

    AND USES THEREOF Aleksandr Mettalinovich Tishin (Moscow, RU), Veisalkara Ogly Halilov (Moscow, RU) • Porous silicon/ Ni composites of high coercivity due to magnetic field-assisted etching Petra Granitzer, Klemens Rumpf, Toshiyuki Ohta, Nobuyoshi Koshida, Peter Poelt and Michael Reissner • 乙醇燃料電池用多孔白金增加效率 Zhang et. al, Porous platinum nanowire arrays for direct ethanol fuel cell applications, Chem. Commun., 2009, 195–197 • 用 SiO2 可以表面吸附氫氣 M.G. Nijkamp et al., Hydrogen storage using physisorption – materials demands, Appl. Phys. A 72, 619–623 (2001)
  8. Division of works 口頭報告 —— 書漢 (19) 郁台 (28) 宗修

    (26) 熱情演出 —— 怡萱 (07) 立銘 (39) 毓翰 (55) 簡報製作 —— 立銘 (39) 概念發想 —— 書漢 (19) 郁台 (28) 宗修 (26) 怡萱 (07) 立銘 (39) 毓翰 (55) 技術分析 —— 書漢 (19) 郁台 (28) 怡萱 (07) 文獻回顧 —— 宗修 (26) 毓翰 (55)