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A tank is full of water. Find the work W required to pump the water out of the spout. (Use 9.8 for g.) W = J Enter an exact nWhen gas expands in a cylinder with radius r, the pressure P at any given time is a function of the volume V: P = P(V). The f

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Answer #1

The work is given by

work = distance x density x volume xg

or, in differential form taking g= 9.8 and \text{density} = 1000

\text dW = 9800y \,\text dV. The total work is given by

W = \underbrace{\int_0^a 9800 \,y \,\text dV}_{\text{tank}} + \underbrace{9800 \times d \times V}_{\text{pipe }d}

The differential form V is \text dV =y \times c\times \text dy .

Therefore,

W = \int_0^4 9800 \times y \times y\times 15 \,\text dy + 9800 \times 4 \times 15 \times \frac{4\times 4}2
= 147000\int_0^4 y^2 \,\text dy + 4704000
= 147000\left[\frac{y^3}3 \right]_0^4 + 4704000
= 7840000 .

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