The vapor pressure of liquid carbon tetrachloride, CCI4, is 100. mm Hg at 296 K. A 0.261 g sample of liquid CCI4 is placed in a closed, evacuated 400. mL container at a temperature of 296 K. Assuming that the temperature remains constant, will all of the liquid evaporate? What will the pressure in the container be when equilibrium is reached? mm Hg

Chemistry for Engineering Students
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Chapter5: Gases
Section: Chapter Questions
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The vapor pressure of liquid carbon tetrachloride, CCI4, is 100. mm Hg at 296 K. A 0.261 g sample of
liquid CCI4 is placed in a closed, evacuated 400. mL container at a temperature of 296 K.
Assuming that the temperature remains constant, will all of the liquid evaporate?
What will the pressure in the container be when equilibrium is reached?
mm Hg
Transcribed Image Text:The vapor pressure of liquid carbon tetrachloride, CCI4, is 100. mm Hg at 296 K. A 0.261 g sample of liquid CCI4 is placed in a closed, evacuated 400. mL container at a temperature of 296 K. Assuming that the temperature remains constant, will all of the liquid evaporate? What will the pressure in the container be when equilibrium is reached? mm Hg
A sample of 3.73 mol of argon is confined at low pressure in a volume at a temperature of 61 C. Describe
quantitatively the effects of each of the following changes on the pressure, the average kinetic energy per
molecule in the gas, and the root-mean-square speed.
(a) The temperature is increased to 177 °C.
(b) The volume is tripled.
(c) The amount of argon is decreased to 1.96 mol.
Give each answer as a decimal factor of the form: new value = factor old value. A factor of 1 means no
change.
Change
KEavg
Urms
(а)
(b)
(c)
Transcribed Image Text:A sample of 3.73 mol of argon is confined at low pressure in a volume at a temperature of 61 C. Describe quantitatively the effects of each of the following changes on the pressure, the average kinetic energy per molecule in the gas, and the root-mean-square speed. (a) The temperature is increased to 177 °C. (b) The volume is tripled. (c) The amount of argon is decreased to 1.96 mol. Give each answer as a decimal factor of the form: new value = factor old value. A factor of 1 means no change. Change KEavg Urms (а) (b) (c)
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