Thermodynamics: An Engineering Approach
Thermodynamics: An Engineering Approach
9th Edition
ISBN: 9781259822674
Author: Yunus A. Cengel Dr., Michael A. Boles
Publisher: McGraw-Hill Education
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Chapter 1.11, Problem 103RP

Determine the maximum amount of load, in kg, the balloon described in Prob. 1–101 can carry Answer: 900 kg

Expert Solution & Answer
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To determine

The maximum amount of load can carry by balloon.

Answer to Problem 103RP

The maximum amount of load can carry by balloon is 900kg_.

Explanation of Solution

Show the free body diagram of the balloon.

Thermodynamics: An Engineering Approach, Chapter 1.11, Problem 103RP

Write the expression of volume of sphere of a balloon.

Vballoon=4πr3/3 (I)

Write the expression of the buoyancy force acting on the balloon.

FB=ρairgVballoon (II)

Here, the density of air is ρH2O, the volume of balloon is Vballoon, and the acceleration of gravity is g.

Write the expression of the mass of helium.

mHe=ρHeVballoon (III)

Here, the density of the helium is ρHe and volume of the balloon is Vballoon.

Write the expression of the total mass (buoyancy force and the weight force).

W=FBmtotalg=FBmtotal=FBg (IV)

Here, the force acting on balloon is FB and the acceleration of gravity is g.

Write the expression of the maximum load can carried by balloon.

mpeople=mtotalmHe (V)

Here, the total mass of a balloon is mtotal and the mass of helium is mHe.

Conclusion:

Substitute 6m for r in Equation (I).

Vballoon=4π(6m)3/3=904.8m3.

Substitute 1.16kg/m3 for ρair, 9.81m/s2 for g, and 904.8m3 for Vballoon in Equation (II).

FB=(1.16kg/m3)(9.81m/s2)(904.8m3)=10296kgm/s2×(1N1kgm/s2)=10296N

Substitute 1.16/7kg/m3 for ρHe and 904.8m3 for Vballoon in Equation (III).

mHe=(1.167kg/m3)(904.8m3)=149.9kg.

Substitute 10296N for FB and 9.81m/s2 for g in Equation (IV).

mtotal=10296N9.81m/s2=1050kg

Substitute 1050kg for mtotal and 149.9kg for mHe in Equation (V)

mpeople=(1050kg)(149.9kg)=900kg

Thus, the maximum amount of load can carry by balloon is 900kg_.

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Chapter 1 Solutions

Thermodynamics: An Engineering Approach

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