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5 1000 IBM s blue days

6 (25MHz 500kB 3.5GHz 100GB) 5

7 Integral vs. Modular architecture 6

8 7

9 8 Mineral Commodity Summaries 2007

10 Thermosphere Mesosphere Stratosphere Troposphere km 50-80km 11-50km 0-11km /100m 9

11 2008May 10

12 11

13 Uranium Equivalent Stock of Energy Source Uranium Natural Gas Sun Annual Energy from the Sun Natural Gas Oil Coal Oil Coal Annual Demand Annual Demand 12 Dr.Bjorseth

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15 plan / W (2020 ) 14

16 15

17 (ख़ मत भ, amitaabha). 16

18 sunlight absorption (1) charge recombination without emission (2) charge recombination with emission Source: Dr. Yoshitaka Okada 17

19 The Championships for newer Photovoltaic cells, Wimbledon in Japan 9 countries, 10 types, 26 different modules severely compete in Hokuto (west of Tokyo) 18

20 Samurai: ancient noble warrior? Innovation Samurai today is defined here for prepared, decided, devoted, high-minded scientist or engineer who tackles difficult breakthrough targets with bravery, deepest spirits, calm passion and robust personal commitment under empowerment. 19

21 Next-Generation Vehicle Fuel Initiative 1. Biofuel 2. Clean diesel 3. Next-generation batteries 4. Fuel cells/hydrogen Economy 1. Biofuel Bioethanol blended with gasoline, and iodiesel blended with diesel oil Cellulose-derived biofuel Waste wood 2. Clean diesel Share of diesel vehicles Conversion into sugar using enzymes Fermentation using yeast Ethanol Common rail system 3. Next-generation batteries Next-Generation Vehicle Battery Development Project Budget (07FY): $ 50 Million Targeted battery performance Targeted battery cost Improved battery (2010) Compact EV 1 1/2 Advanced battery (2015) Compact EV PHV Innovative battery (2030) Standard-sized EV Hydrogen Economy: transition from carbon cycle to water cycle 1.5 1/7 R&D of next-gen batteries (improvement in performance) 4. Fuel cells/hydrogen Economy Gasoline engine Plug-in Hybrid Vehicle Buttery Charging circuit Electricity for daily commuting (Huge cnt cut of oil consumption) Gasoline for long drives 7 1/40 Home power supply Europe Japan High-pressure pump Fuel tank Injector Electronic control system Open/ close signal Common rail Hydrogen station Hydrogen supply Hydrogen vehicles - Powered by way of the combustion of hydrogen instead of fossil fuel (e.g. gasoline) - Producing very clean exhaust that contains almost nothing but water Fuel cell vehicle

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23 L eau, répondit Cyrus Smith 22

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27 26 1,224 1, ,

28 Provide feedback on various demonstration data, for research and development Step up to mass production and inspection of learning curve Price target: 1.2 million yen/system (in 2008) METI NEDO Subsidy Application Application for installation NEF Energy suppliers Residences Subsidy Installation decision Number of installation 27 Web site:

29 28

30 PM is turning a key to open Hydrogen Economy 29

31 Targets Outline Targets Outline Microstructured fuel cells Vancouver; established in 2001 Polymer electrolyte membrane for high-temperature operation A spin-off from Hoechst AG Module-type polymer electrolyte membrane Fuel cells for emergency power supply A spin-off from Vodafone Compact and low-cost hydrogen production device Fuel cells for fork lifts Hydrogen sensor with advanced technology of the Sandia National Laboratories Fuel cells for compact mobiles Test equipment for fuel cells DMFC (a spin-off from SRI) Micro-SOFC and microreformers on silicon chips developed with the technology of MIT and Lawrence Livermore National Laboratory New-type membrane for DMFC DMFC (a spin-off from SRI) Japanese university venture (Micropump) Ballard, BASF, BOC, Boeing, Mitsubishi Corporation, Shell Hydrogen Shell Hydrogen, Mitsubishi Corp., Johnson Matthey, Danfoss, Solvay 30

32 SBIR SBIR DOEDOE ts_sub.htm Solicitations 31

33 32

34 (2006.8) 33

35 The World s Largest FCEXPO February 25 [Wed] - 27 [Fri],

36 JFE 17 35

37 Nine Dragons Paper 36

38 Market Cap:

39 38

40 39

41 40 Zephyr Mark Zero 3.4

42 41

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