MASTERING CHEMISTRY:THE CENTRAL SCIENCE
MASTERING CHEMISTRY:THE CENTRAL SCIENCE
13th Edition
ISBN: 9781269712538
Author: Brown
Publisher: PEARSON
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Chapter 18, Problem 1DE
Interpretation Introduction

To determine: The mass of helium in grams inside the blimp.

Expert Solution & Answer
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Answer to Problem 1DE

Solution: The mass of helium inside the blimp is 9.39×105g and it corresponds to option (e).

Explanation of Solution

Given

The volume of helium inside the blimp is 5.74×106L .
The temperature of helium is 25°C .
The absolute pressure of helium is 1.00atm .
The conversion of °C to Kelvin is done as,

    T°C=T+273K

Hence, the conversion of 25°C into Kelvin is ,

    25°C=25+273K=298K

The relation between number of moles of a gas at the given values of T,PandV for an ideal gas is given by the formula,

    PV=nRTn=PVRT

Where,

  • n is the number of moles of the gas.
  • P is the absolute pressure of the gas.
  • T is the absolute temperature of the gas.
  • R is the gas constant (0.08206L-atm/mol-K) .
  • V is the volume of the gas.
Now, substitute the values of T,P,RandV in above equation.
    n=1.00atm×5.74× 106L0.08206L-atm/mol-K×298K=2.347×105mol

The atomic mass of helium is 4.0g/mol .

The mass of the helium is calculated using the formula,

    MassofHe=MolesofHe×AtomicmassofHe

Substitute the value of moles and atomic mass of He in the above equation.

    MassofHe=2.347×105mol×4.00g/mol=9.39×105g

Hence, the mass of helium in grams inside the blimp is 9.39×105g .

Conclusion


The mass of helium inside the blimp is 9.39×105g .

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Chapter 18 Solutions

MASTERING CHEMISTRY:THE CENTRAL SCIENCE

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