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Follow the engineering methodology and clearly indicate which portions of your work are assemble, analyze, calculate, and finalize. Please do Part B ** only! ty

Follow the engineering methodology and clearly indicate which portions of your work are assemble, analyze, calculate, and finalize.
Please do Part B ** only! ty
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3.22 A bioinstrumentation manufacturer mixes four alloy feeds to continuously produce desired alloys to cast into scalpels and other surgical equipment. (Adapted from Reklatis GV, Introduction to Material and Energy Balances, 1983.) (a) Inlet Alloy Feeds 1, 2, 3, and 4 are combined in one mixing unit (Figure 3.32a). The Target Alloy I outlet mass flow rate is 1.00104Ib/hr.F,G, H, and K are hypothetical compounds. The weight fractions of components F, G, H, and K in the Alloy Feeds and Target Alloy I are given in Figure 3.32a Alloy ferds in a mining anic. TABL. 3,10 Table 3.10. Calculate the mass flow rates at which the four Alloy Feeds should be supplied to mix to produce the Target Alloy I stream. (b) For a different application, Alloy Feed 1 and Alloy Feed 2 are combined in a mixing tank labeled Mixer 1 (Figure 3.32b). The weight fractions of components. F, G, H, and K in Alloy Feeds 1 and 2 are given in Table 3.10. The mass fraction of F in the outlet stream from Mixer 1 is 0.50. The outlet stream from Mixer 1 is then combined with Alloy Feed 5 in a second mixing tank labeled Mixer 2 to produce Target Alloy II. Alloy Feed 5 contains only F, H, and K; the mass fraction of H is one-half the mass fraction of F. The mass fraction of F in Target Alloy II is 0.40. In Target Alloy II, the mass fraction of G is equal to the mass fraction of H. The Target Alloy II outlet mass flow rate is 1.00104lb,hr. - Set up and solve mass conservation equations around Mixer 1 . Determine the mass flow rates of all streams and the mass fractions of all components in all streams entering and leaving Mixer 1. Report the final answers so that the outlet mass flow of Target Alloy II is 1.00104lb/ hr. - Set up and solve mass conservation equations around Mixer 2. Determine the mass flow rates of all streams and the mass fractions of all components in all streams entering and leaving Mixer 2. Repott the final answers so that the outlet mass flow of Target Alloy II is 1.00104lb/hrm. Figure 3.32b Two minee unibs in an alloy procetuing bysm

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