TEST BANK
Introduction to Flight, 9th Edition
by John Anderson and Mary L. Bowden
SC
O
R
EG
U
ID
ES
, Table of Content
1) The First Aeronautical Engineers
2) Fundamental Thoughts
3) The Standard Atmosphere
4) Basic Aerodynamics
SC
5) Airfoils, Wings, and Other Aerodynamics Shapes
6) Elements of Airplane Performance
O
7) Principles of Stability and Control
R
8) Space Flight (Astronautics)
9) Propulsion
EG
10) Hypersonic Vehicles
U
ID
ES
,There are No Test Questions for Chapter 1.
SC
O
R
EG
U
ID
ES
, Chapter 2
1. Award: 10.00 points
Consider the low-speed flight of a Space Shuttle as it is nearing a landing. If the air pressure and temperature at the nose of the shuttle are 1.00 atm and 300 K,
respectively, calculate the density and specific volume.
The density is 1.17 ± 2% kg/m3.
The specific volume is 0.85 ± 5% m3/kg.
Explanation:
SC
ρ = P/RT = (1.00 × 1.01 × 105)/(287 × 300) = 1.17 kg/m3
ν = 1/ρ = 1/1.17 = 0.85 m3/kg
The density is 1.17 kg/m3.
The specific volume is 0.85 m3/kg.
References
Numeric Response Difficulty: Easy
O
2.
R
Award: 10.00 points
EG
Consider 1 kg of helium at 500 K. Assuming that the total internal energy of helium is due to the mean kinetic energy of each atom summed over all the atoms,
calculate the internal energy of this gas. Note: The molecular weight of helium is 4.
The internal energy of the gas is 1.558 ± 2% × 106 J.
Explanation:
3 3
Mean kinetic energy of each atom = 2 kT = 2 (1.38 × 10 − 23) (500) =1.035 × 10 − 20 JOne kg -mole, which has a mass of 4 kg, has 6.02 × 10 26 atoms.Hence 1 kg
U
The internal energy of the gas is 1.558 × 106 J.
References
ID
Numeric Response Difficulty: Medium
ES
Introduction to Flight, 9th Edition
by John Anderson and Mary L. Bowden
SC
O
R
EG
U
ID
ES
, Table of Content
1) The First Aeronautical Engineers
2) Fundamental Thoughts
3) The Standard Atmosphere
4) Basic Aerodynamics
SC
5) Airfoils, Wings, and Other Aerodynamics Shapes
6) Elements of Airplane Performance
O
7) Principles of Stability and Control
R
8) Space Flight (Astronautics)
9) Propulsion
EG
10) Hypersonic Vehicles
U
ID
ES
,There are No Test Questions for Chapter 1.
SC
O
R
EG
U
ID
ES
, Chapter 2
1. Award: 10.00 points
Consider the low-speed flight of a Space Shuttle as it is nearing a landing. If the air pressure and temperature at the nose of the shuttle are 1.00 atm and 300 K,
respectively, calculate the density and specific volume.
The density is 1.17 ± 2% kg/m3.
The specific volume is 0.85 ± 5% m3/kg.
Explanation:
SC
ρ = P/RT = (1.00 × 1.01 × 105)/(287 × 300) = 1.17 kg/m3
ν = 1/ρ = 1/1.17 = 0.85 m3/kg
The density is 1.17 kg/m3.
The specific volume is 0.85 m3/kg.
References
Numeric Response Difficulty: Easy
O
2.
R
Award: 10.00 points
EG
Consider 1 kg of helium at 500 K. Assuming that the total internal energy of helium is due to the mean kinetic energy of each atom summed over all the atoms,
calculate the internal energy of this gas. Note: The molecular weight of helium is 4.
The internal energy of the gas is 1.558 ± 2% × 106 J.
Explanation:
3 3
Mean kinetic energy of each atom = 2 kT = 2 (1.38 × 10 − 23) (500) =1.035 × 10 − 20 JOne kg -mole, which has a mass of 4 kg, has 6.02 × 10 26 atoms.Hence 1 kg
U
The internal energy of the gas is 1.558 × 106 J.
References
ID
Numeric Response Difficulty: Medium
ES