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Only need the V(SRK) and f(v) 4. (24 pts) The goal of this problem is to use both Excel's Solver and APEx to solve the

Only need the V(SRK) and f(v)
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4. (24 pts) The goal of this problem is to use both Excel's Solver and APEx to solve the SRK equation of state to determine (L/mol) for CO2 at (i) 200K and 6.8atm; (ii) 250K and 12.3atm; (iii) 300K and 6.8atm; (iv) 300K and 21.5atm; and (v) 300K and 50.0atm. (a) Starting with Equation 5.3-8, derive the following equivalent expression for the SRK equation of state: f(V^)=PV^3RTV^2+(ab2PbRT)V^aab=0. (b) Prepare an Excel spreadsheet to take as inputs a species identifier (CO2), the critical temperature, critical pressure, Pitzer acentric factor, and the temperatures and pressures for which V is calculated, and to calculate V using Equations 5.3-8 to 5.3-13 for each of the specified conditions. The spreadsheet should have the following structure: 4. (24 pts) The goal of this problem is to use both Excel's Solver and APEx to solve the SRK equation of state to determine (L/mol) for CO2 at (i) 200K and 6.8atm; (ii) 250K and 12.3atm; (iii) 300K and 6.8atm; (iv) 300K and 21.5atm; and (v) 300K and 50.0atm. (a) Starting with Equation 5.3-8, derive the following equivalent expression for the SRK equation of state: f(V^)=PV^3RTV^2+(ab2PbRT)V^aab=0. (b) Prepare an Excel spreadsheet to take as inputs a species identifier (CO2), the critical temperature, critical pressure, Pitzer acentric factor, and the temperatures and pressures for which V is calculated, and to calculate V using Equations 5.3-8 to 5.3-13 for each of the specified conditions. The spreadsheet should have the following structure

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