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摩擦速度と管摩擦係数
選択肢
(1) | \(\lambda Re^2 \Large \left( \frac{\nu }{d} \right)^2 \normalsize\) | (2) | \(\Delta p \Large \frac{2 d}{\rho L} \left( \frac{d }{\nu} \right)^2 \normalsize\) |
(3) | \(\lambda \Large \frac{L}{d} \frac{v^2}{2g} \normalsize\) | (4) | \( \Large \frac{2 g}{v^2} \normalsize\) |
(5) | \(-2 \log \Large \left( \frac{\epsilon / d}{3.71} + \frac{2.51}{Re \sqrt{\lambda}}\right) \normalsize\) | (6) | \(\Large \frac{d v}{\nu} \normalsize\) |
(7) | \(2 \log \Large \left( \frac{\epsilon / d}{3.71} + \frac{2.51}{Re \sqrt{\lambda}}\right) \normalsize\) | (8) | \(2 \log \left( 2.51 \times \Large \frac{\nu}{d} \sqrt{\frac{\rho L}{2 d \Delta p}}\right) \normalsize\) |
(9) | \(\Delta p \Large \frac{2 d}{\rho L} \normalsize\) | (10) | \(\left( \Large \frac{L}{d} \normalsize \right)\) |
(11) | \(\Large \frac{\Delta p}{\rho} \normalsize\) | (12) | \(\lambda \Large \frac{L}{d} \frac{v^2}{2g} \normalsize \rho g \) |
(13) | \(\lambda \left( \Large \frac{L}{d} \normalsize \right) \Large \frac{v^2}{2 g}\) | (14) | \( \Large \frac{\pi d^2}{4} \normalsize \sqrt{\Delta p \Large \frac{2 d}{\rho L}} \times -2 \log \left( 2.51 \times \Large \frac{\nu}{d} \sqrt{\frac{\rho L}{2 d \Delta p}}\right) \normalsize\) |
(15) | \(-2 \log \left( 2.51 \times \Large \frac{\nu}{d} \sqrt{\frac{\rho L}{2 d \Delta p}}\right) \normalsize\) | (16) | \( \sqrt{\Delta p \Large \frac{2 d}{\rho L}} \times -2 \log \left( 2.51 \times \Large \frac{\nu}{d} \sqrt{\frac{\rho L}{2 d \Delta p}}\right) \normalsize\) |
(17) | \(\Large \frac{\nu }{d} \normalsize Re\) | (18) | \(\Large \frac{4 \tau_0}{\rho g} \frac{v^2}{2 g}\normalsize\) |
(19) | \(\Large \frac{v^2}{2 g} \normalsize\) | (20) | \( \sqrt{\Delta p \Large \frac{2 d}{\rho L}} \times 2 \log \left( 2.51 \times \Large \frac{\nu}{d} \sqrt{\frac{\rho L}{2 d \Delta p}}\right) \normalsize\) |
(21) | \( \Large \frac{\pi d^2}{4} \normalsize \sqrt{\Delta p \Large \frac{2 d}{\rho L}} \times 2 \log \left( 2.51 \times \Large \frac{\nu}{d} \sqrt{\frac{\rho L}{2 d \Delta p}}\right) \normalsize\) |