Elementary Principles 27 - 3.26 (a) Samples Species 1 CH4...

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Unformatted text preview: 3.26 (a) Samples Species 1 CH4 C2H6 C3H8 C4H10 CH4 C2H6 C3H8 C4H10 CH4 C2H6 C3H8 C4H10 CH4 C2H6 C3H8 C4H10 CH4 C2H6 C3H8 C4H10 MW 16.04 30.07 44.09 58.12 16.04 30.07 44.09 58.12 16.04 30.07 44.09 58.12 16.04 30.07 44.09 58.12 16.04 30.07 44.09 58.12 k 0.150 0.287 0.467 0.583 0.150 0.287 0.467 0.583 0.150 0.287 0.467 0.583 0.150 0.287 0.467 0.583 0.150 0.287 0.467 0.583 Peak Mole Mass moles Area Fraction Fraction 3.6 0.156 0.062 0.540 2.8 0.233 0.173 0.804 2.4 0.324 0.353 1.121 1.7 0.287 0.412 0.991 7.8 2.4 5.6 0.4 3.4 4.5 2.6 0.8 4.8 2.5 1.3 0.2 6.4 7.9 4.8 2.3 0.249 0.146 0.556 0.050 0.146 0.371 0.349 0.134 0.333 0.332 0.281 0.054 0.141 0.333 0.329 0.197 0.111 0.123 0.685 0.081 0.064 0.304 0.419 0.212 0.173 0.324 0.401 0.102 0.059 0.262 0.380 0.299 1.170 0.689 2.615 0.233 0.510 1.292 1.214 0.466 0.720 0.718 0.607 0.117 0.960 2.267 2.242 1.341 mass 8.662 24.164 49.416 57.603 18.767 20.712 115.304 13.554 8.180 38.835 53.534 27.107 11.549 21.575 26.767 6.777 15.398 68.178 98.832 77.933 2 3 4 5 (b) REAL A(10), MW(10), K(10), MOL(10), MASS(10), MOLT, MASST INTEGER N, ND, ID, J READ (5, *) N CN-NUMBER OF SPECIES READ (5, *) (MW(J), K(J), J = 1, N) READ (5, *) ND DO 20 ID = 1 , ND READ (5, *)(A(J), J = 1, N) MOLT = 0. 0 MASST = 0. 0 DO 10 J = 1, N MOL(J) = MASS(J) = MOL(J) * MW(J) MOLT = MOLT + MOL(J) MASST = MASST + MASS(J) 10 CONTINUE DO 15 J = 1, N MOL(J) = MOL(J)/MOLT MASS(J) = MASS(J)/MASST 15 CONTINUE WRITE (6, 1) ID, (J, MOL(J), MASS (J), J = 1, N) 20 CONTINUE 1 FORMAT (' SAMPLE: `, I3, /, ' SPECIES MOLE FR. MASS FR.', /, 3-11 ...
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