(Torr) | x2 The given table below shows the tabulated results for the variation of the total pressure of isopropanol and n-decane 942.6 as a function of the mode fraction of the n-decane and in 909.6...


(Torr) | x2<br>The given table below shows the tabulated results for the<br>variation of the total pressure of isopropanol and n-decane 942.6<br>as a function of the mode fraction of the n-decane and in 909.6<br>the solution and vapor phases as obtained by Ratcliffe and 883.3<br>Chao (Canadian Journal of Chemical Engineering, 1969). 868.4<br>At a total pressure of 868.4torr, calculate the activity 830.2<br>coefficients for both components. The pure vapor pressure 786.8<br>0.1312 0.0243<br>0.2040 0.0300<br>0.2714 0.0342<br>0.3360<br>|0.4425<br>0.0362<br>0.0411<br>0.0451<br>0.5578<br>of isopropanol and n-decane are 1008torr and 48.3tor<br>758.7<br>0.6036<br>0.0489<br>

Extracted text: (Torr) | x2 The given table below shows the tabulated results for the variation of the total pressure of isopropanol and n-decane 942.6 as a function of the mode fraction of the n-decane and in 909.6 the solution and vapor phases as obtained by Ratcliffe and 883.3 Chao (Canadian Journal of Chemical Engineering, 1969). 868.4 At a total pressure of 868.4torr, calculate the activity 830.2 coefficients for both components. The pure vapor pressure 786.8 0.1312 0.0243 0.2040 0.0300 0.2714 0.0342 0.3360 |0.4425 0.0362 0.0411 0.0451 0.5578 of isopropanol and n-decane are 1008torr and 48.3tor 758.7 0.6036 0.0489

Jun 11, 2022
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