Question: pipe diameter is 2 . 0 0 cm . ( a ) Find the speed of flow ( in ( mathrm { m

pipe diameter is 2.00 cm .
(a) Find the speed of flow (in \(\mathrm{m}/\mathrm{s}\)) in the lower section.
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Write Bernoulli's equation for this situation. Use the continuity equation to express \( v_{1}\) in terms of \( v_{2}\). Combine Bernoulli's equation and the equation of continuity to determine the desired speed. \(\mathrm{m}/\mathrm{s}\)
(b) Find the speed of flow (in \(\mathrm{m}/\mathrm{s}\)) in the upper section. ] x
You determine \( v_{1}\) in part (a). Use the equation of continuity to express
|ms of \( v_{1}\) and the diameter (or the radius) of the pipe at both ends. \(\mathrm{m}/\mathrm{s}\)
(c) Find the volume flow rate (in \(\mathrm{m}^{3}/\mathrm{s}\)) through the pipe.
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pipe diameter is 2 . 0 0 cm . ( a ) Find the

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