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Only for toluene (odd CSU) The temperature-dependence of vapor pressure (of liquids), p, can be estimated by the Antoine Equation In(p) = A - B/C

Only for toluene (odd CSU)
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The temperature-dependence of vapor pressure (of liquids), p, can be estimated by the Antoine Equation In(p) = A - B/C + T Where "p" is the vapor pressure in bars with the temperature, T, in Kelvin (K = degree C + 273.15); while "A", "B, " and "C" are constants (a) Find the vapor pressure of toluene (odd CSU ID) or benzene (even CSU ID) at room temperature (298 K) (b) For what temperature would the vapor pressure of benzene or toluene be equal to atmospheric pressure (1 atm or 760 mm Hg)? The temperature-dependence of vapor pressure (of liquids), p, can be estimated by the Antoine Equation In(p) = A - B/C + T Where "p" is the vapor pressure in bars with the temperature, T, in Kelvin (K = degree C + 273.15); while "A", "B, " and "C" are constants (a) Find the vapor pressure of toluene (odd CSU ID) or benzene (even CSU ID) at room temperature (298 K) (b) For what temperature would the vapor pressure of benzene or toluene be equal to atmospheric pressure (1 atm or 760 mm Hg)

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