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  1. Table A–1 Molar mass, gas constant, and critical-point properties Table A–2 Ideal-gas specific heats of various common gases Table A–3 Properties of common liquids, solids, and foods Table A–4 Saturated water—Temperature table Table A–5 Saturated water—Pressure table Table A–6 Superheated water Table A–7 Compressed liquid water Table A–8 Saturated ice–water vapor

  2. One mole of gas occupies 22.414 L at a pressure of 1.000 atm and a temperature of 0 °C (273.15 K). This is known as standard temperature and pressure or STP. Use the ideal gas law to work out the value of the universal gas constant, R , and its units.

  3. Worksheet 5 : Types of elements and Properties. Topic 2: The Periodic Table. Set A: Terms and Definitions. Objective: By defining these words, you should become more familiar with Periodic Table related terms and their definitions.

  4. 39) A gas occupies a volume of 34.2 mL at a temperature of 15.0 °C and a pressure of 800.0 torr. What will be the volume of this gas at standard conditions? 40) A gas sample occupies 3.25 liters at 24.5 °C and 1825 mm Hg. Determine the temperature at which the gas will occupy 4250 mL at 1.50 atm.

  5. The relationship between the number of particles in a gas, the volume of the container holding the gas, the pressure of the gas, and the temperature of the gas is described by the ideal gas law: PV = nRT. In this animation N = nR (i.e., kB = 1). This, then, gives the ideal gas law as PV = NT. Restart.

  6. Worksheet CHEM 150: Ch. 10 Ideal Gas Law 1. How many moles of gas (air) are in the lungs of an adult with a lung capacity of 3.9 L? Assume that the lungs are at 1.00 atm pressure and at a body temperature of 40 o C. ! ∙ $%& (Hint: V, P, and T are given. Use the equation PV = nRT where R = 0.082058 ) ’∙ &() 2.

  7. Chemistry: The Ideal Gas Law Directions: Solve each of the following problems. Show your work, including proper units, to earn full credit. 1. If 3.7 moles of propane are at a temperature of 28oC and are under 154.2 kPa of pressure, what volume does the sample occupy? 2.

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