5. The separator shown below produces pure acetone from a mixture of acetone and toluene. acetone (0.50 wt fraction) acetone (x wt fraction) toluene toluene (0.50 wt fraction) separator (3 100. kg/min...


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5. The separator shown below produces pure acetone from a mixture of acetone and<br>toluene.<br>acetone (0.50 wt fraction)<br>acetone (x wt fraction)<br>toluene<br>toluene (0.50 wt fraction)<br>separator<br>(3<br>100. kg/min<br>2 acetone<br>(a) Derive an equation for the flow rate of stream 2 as a function of x.<br>(b) Check your equation at x = 0.50. Does your predicted flow rate for stream 2<br>seem correct?<br>(c) Check your equation at a different value of x. Choose a value of x that yields an<br>obvious answer for the flow rate of stream 2.<br>

Extracted text: 5. The separator shown below produces pure acetone from a mixture of acetone and toluene. acetone (0.50 wt fraction) acetone (x wt fraction) toluene toluene (0.50 wt fraction) separator (3 100. kg/min 2 acetone (a) Derive an equation for the flow rate of stream 2 as a function of x. (b) Check your equation at x = 0.50. Does your predicted flow rate for stream 2 seem correct? (c) Check your equation at a different value of x. Choose a value of x that yields an obvious answer for the flow rate of stream 2.

Jun 09, 2022
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