Concept explainers
(a)
Interpretation:
The value of
Concept Introduction:
Root mean square speed is square root of average value of square of molecular speeds of gas molecules. It includes molecular weight and temperature, both of which affect kinetic energy of gas. It is denoted by
Here,
(a)
Answer to Problem 3D.10E
Value of
Explanation of Solution
Conversion factor to convert
Substitute
Hence,
(b)
Interpretation:
The value of
Concept Introduction:
Refer to part (a).
(b)
Answer to Problem 3D.10E
Value of
Explanation of Solution
Conversion factor to convert
Substitute
Hence,
(c)
Interpretation:
The value of
Concept Introduction:
Refer to part (a).
(c)
Answer to Problem 3D.10E
Value of
Explanation of Solution
Conversion factor to convert
Substitute
Hence,
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Chapter 3 Solutions
Chemical Principles: The Quest for Insight
- Given that a sample of air is made up of nitrogen, oxygen, and argon in the mole fractions 0.78 N2, 0.21 O2, and 0.010 Ar, what is the density of air at standard temperature and pressure?arrow_forward(a) Compute the root-mean-square speed of H2 molecules in hydrogen at a temperature of 300 K.(b) Repeat the calculation for SF6 molecules in gaseous sulfur hexafluoride at 300 K.arrow_forwardA container with volume 0.2 m² contains of 2.5 moles of oxygen gas. Given that the molar mass of oxygen molecule is 32 g/mol and the most probable speed is 576 m/s. Consider the gas as an ideal gas, find (a) the root-mean-square speed of each molecule. (b) the temperature of the oxygen gas, (c) the pressure of the oxygen gas, (d) the number of mole of molecules which the speed is in the range of 400-420 m/s. Mu2 v?e 2RT Maxwell distribution function P(v) = 4n 2nRTarrow_forward
- A flask contains a mixture of neon (Ne), krypton (Kr), and radon (Rn) gases. Compare (a) the average kinetic energies of the three types of atoms and (b) the root-mean-square speeds. (Hint: Appendix D shows the molar mass (in g>mol) of each element under the chemical symbol for that element.)arrow_forwardCalculate the root mean square speed of xenon (Xe) atoms in a sample of xenon gas at 21.2 °C.arrow_forwardA sample of volume 18.3 L has a mass of 57.9 g.(a) Is the material gaseous or condensed?(b) If the molar mass of the material is 123 g mol-1 , calculate its molar volume.arrow_forward
- The energy of the van der Waals bond, which is responsible for a number of the characteristics of water, is about 0.50 eV. (a) At what temperature would the average translational kinetic energy of water molecules be equal to this energy? (b) At that temperature, would water be liquid or gas? Under ordinary everyday conditions, do van der Waals forces play a role in the behavior of water?arrow_forwardCalculate the root mean square velocity, in m/s, of O2 at 273.0 K. Assume ideal gas behavior.arrow_forwardCalculate the density of uranium (VI) fluoride, UF6, at 70.0 °C and 25.0 kPa.arrow_forward
- sulfurarrow_forwardDescribe what happens to the average kinetic energy of ideal gas molecules when the conditions are changed as follows:(a) The pressure of the gas is increased by reducing the volume at constant temperature.(b) The pressure of the gas is increased by increasing the temperature at constant volume.(c) The average velocity of the molecules is increased by a factor of 2.arrow_forwardCalculate the root mean square velocity of gaseous xenon atoms at 25 degrees Celsius.arrow_forward
- Chemistry: An Atoms First ApproachChemistryISBN:9781305079243Author:Steven S. Zumdahl, Susan A. ZumdahlPublisher:Cengage Learning