Shown here is a table of the vapor pressure of Vapor Pressure (kPa) benzene and toluene. Temperature (°C) Benzene Toluene 85 116.9 46.0 Estimate the heat of vaporization of benzene and of toluene at 85 °C and at 105 °C using the highest order of accuracy possible. Heat of vaporization can be calculated using the Clausius-Clapeyron 90 135.5 54.0 95 155.7 63.3 100 179.2 74.3 Relation: 105 204.2 86.0 d In P ΔΗ dT RT2
Shown here is a table of the vapor pressure of Vapor Pressure (kPa) benzene and toluene. Temperature (°C) Benzene Toluene 85 116.9 46.0 Estimate the heat of vaporization of benzene and of toluene at 85 °C and at 105 °C using the highest order of accuracy possible. Heat of vaporization can be calculated using the Clausius-Clapeyron 90 135.5 54.0 95 155.7 63.3 100 179.2 74.3 Relation: 105 204.2 86.0 d In P ΔΗ dT RT2
Shown here is a table of the vapor pressure of Vapor Pressure (kPa) benzene and toluene. Temperature (°C) Benzene Toluene 85 116.9 46.0 Estimate the heat of vaporization of benzene and of toluene at 85 °C and at 105 °C using the highest order of accuracy possible. Heat of vaporization can be calculated using the Clausius-Clapeyron 90 135.5 54.0 95 155.7 63.3 100 179.2 74.3 Relation: 105 204.2 86.0 d In P ΔΗ dT RT2
Need asap. Solve using numerical differentiation. The table for numerical diff is already given
With integration, one of the major concepts of calculus. Differentiation is the derivative or rate of change of a function with respect to the independent variable.
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