Team:Kyoto/Modeling
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<li class="B">Volume of the Titanic
9.7 × 10<sup>4</sup> m<sup>3</sup></li> | <li class="B">Volume of the Titanic
9.7 × 10<sup>4</sup> m<sup>3</sup></li> | ||
<li class="B">Thrust of flagellum (Thrust per one = 0.29 pN)
2.5 × 10<sup>3</sup> N</li> | <li class="B">Thrust of flagellum (Thrust per one = 0.29 pN)
2.5 × 10<sup>3</sup> N</li> | ||
- | <li class="B">Buoyancy by gas vesicle
(Buoyancy per one = f<sub>gas</sub>)
f<sub>gas</sub> | + | <li class="B">Buoyancy by gas vesicle
(Buoyancy per one = f<sub>gas</sub> pN)
f<sub>gas</sub> × V<sub>titanic</sub> / V<sub>E.coli</sub> = f<sub>gas</sub> × 9.7 × 10<sup>22</sup> N</li> |
<p class="conclusion">Titanic floats if f<sub>gas</sub> is more than 4.1 × 10<sup>-3</sup> pN!!</p> | <p class="conclusion">Titanic floats if f<sub>gas</sub> is more than 4.1 × 10<sup>-3</sup> pN!!</p> |
Revision as of 18:11, 26 October 2008
Modeling
Easy approximation calculation
We are similar like a lower figure by Titanic and do the following suppositions.
- The hull inside is clogged up with E.coli jam-packed.
- The lower surface of the hull is filled with E.coli.
- The individual thrust does not interfere each other.
Titanic floats if fgas is more than 4.1 × 10-3 pN!!
Easily more
It floats if only the same volume as the part below the waterline is filled with air.