A 10-mg quantity of phenanthrene (MW = 178) is added to a 1-L flask containing 500 mL of air and 500 mL of water. Predict the aqueous phase equilibrium concentration of phenanthrene at 25° C if the values for this compound for the first four properties and constants listed in Table 2.2 are: Cs = 1.1 mg/L, P = 1.6 x 10-7 atm, X = 4.0 x 10-5 atm-m3/mol, and log Kow = 4.52.
A 10-mg quantity of phenanthrene (MW = 178) is added to a 1-L flask containing 500 mL of air and 500 mL of water. Predict the aqueous phase equilibrium concentration of phenanthrene at 25° C if the values for this compound for the first four properties and constants listed in Table 2.2 are: Cs = 1.1 mg/L, P = 1.6 x 10-7 atm, X = 4.0 x 10-5 atm-m3/mol, and log Kow = 4.52.
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Chapter1: Chemical Foundations
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A 10-mg quantity of phenanthrene
![4)
A 10-mg quantity of phenanthrene (MW = 178) is added to a 1-L flask
containing 500 mL of air and 500 mL of water. Predict the aqueous phase
equilibrium concentration of phenanthrene at 25° C if the values for this
compound for the first four properties and constants listed in Table 2.2 are:
C's = 1.1 mg/L, P = 1.6 × 107 atm, X = 4.0 × 10¯³atm – m³/mol,
and log Kow = 4.52.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F99ee85a1-802a-4e31-bff6-83ea31a38dc7%2F0f462cc1-eacd-43c5-b081-b47755af16ae%2Fqnf7w4w_processed.jpeg&w=3840&q=75)
Transcribed Image Text:4)
A 10-mg quantity of phenanthrene (MW = 178) is added to a 1-L flask
containing 500 mL of air and 500 mL of water. Predict the aqueous phase
equilibrium concentration of phenanthrene at 25° C if the values for this
compound for the first four properties and constants listed in Table 2.2 are:
C's = 1.1 mg/L, P = 1.6 × 107 atm, X = 4.0 × 10¯³atm – m³/mol,
and log Kow = 4.52.
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