Engineering Fundamentals: An Introduction to Engineering
Engineering Fundamentals: An Introduction to Engineering
6th Edition
ISBN: 9780357112311
Author: Saeed Moaveni
Publisher: Cengage Learning US
bartleby

Concept explainers

Question
Book Icon
Chapter 11, Problem 35P

(a)

To determine

Find the amount of radiation emitted from a hot pavement in Arizona.

(a)

Expert Solution
Check Mark

Answer to Problem 35P

In SI units, The amount of radiation emitted from a hot pavement in Arizona is 493.7W and in U.S customary units, it is 1684.7Btuh.

Explanation of Solution

Given data:

Area of the surface, A=1m2.

Emissivity of the surface, ε=0.8.

Temperature of the surface, Ts=50°C.

Formula used:

The relationship between degree Celsius (°C) and Kelvin is,

T(K)=T(Co)+273 (1)

Here,

T(°C) is the temperature in degree Celsius,

T(K) is the temperature in Kelvin.

The formula for the amount of radiant energy emitted by a surface is,

q=εσATs4 (2)

Here,

ε is the emissivity of the surface,

σ is the Boltzmann constant,

A is the area of the surface,

Ts is the temperature of the surface.

Calculation:

Substitute 50°C for T(°C) in equation (1) to find the surface temperature in Kelvin,

Ts(K)=50+273=323K

Substitute 0.8 for ε, 5.67×108Wm2K4 for σ, 1m2 for A, and 323K for Ts in equation (2) to find q,

q=(0.8)(5.67×108Wm2K4)(1m2)(323K)4=0.8×5.67×108×(323)4W=493.7W

Do the unit conversion in above result,

q=493.7W[1W=3.4123Btuh]=(493.7W)(3.4123Btuh1W)=1684.7Btuh

Therefore, in SI units, The amount of radiation emitted from a hot pavement in Arizona is 493.7W and in U.S customary units, it is 1684.7Btuh.

Conclusion:

Hence, in SI units, The amount of radiation emitted from a hot pavement in Arizona is 493.7W and in U.S customary units, it is 1684.7Btuh.

(b)

To determine

Find the amount of radiated emitted from a hood of a car.

(b)

Expert Solution
Check Mark

Answer to Problem 35P

In SI units, The amount of radiation emitted from a hood of a car is 489.8W and in U.S customary units, it is 1671.2Btuh.

Explanation of Solution

Given data:

Area of the surface, A=1m2.

Emissivity of the surface, ε=0.9.

Temperature of the surface, Ts=40°C.

Calculation:

Substitute 40°C for T(Co) in equation (1) to find the surface temperature in Kelvin,

Ts(K)=40+273=313K

Substitute 0.9 for ε, 5.67×108Wm2K4 for σ, 1m2 for A, and 313K for Ts in equation (2) to find q,

q=(0.9)(5.67×108Wm2K4)(1m2)(313K)4=0.8×5.67×108×(313)4W=489.8W

Do the unit conversion in above result,

q=498.8W            [1W=3.4123Btuh]=(498.8W)(3.4123Btuh1W)=1671.2Btuh

Therefore, in SI units, the amount of radiation emitted from a hood of a car is 489.8W and in U.S customary units, it is 1671.2Btuh.

Conclusion:

Hence, in SI units, the amount of radiation emitted from a hood of a car is 489.8W and in U.S customary units, it is 1671.2Btuh.

(c)

To determine

Find the amount of radiated emitted from a sunbather.

(c)

Expert Solution
Check Mark

Answer to Problem 35P

In SI units, The amount of radiation emitted from a sunbather is 477.4W and in U.S customary units, it is 1629.0Btuh.

Explanation of Solution

Given data:

Area of the surface, A=1m2.

Emissivity of the surface, ε=0.9.

Temperature of the surface, Ts=38°C.

Calculation:

Substitute 38°C for T(°C) in equation (1) to find the surface temperature in Kelvin,

Ts(K)=38+273=311K

Substitute 0.9 for ε, 5.67×108Wm2K4 for σ, 1m2 for A, and 311K for Ts in equation (2) to find q,

q=(0.9)(5.67×108Wm2K4)(1m2)(311K)4=0.9×5.67×108×(311)4W=477.4W

Do the unit conversion in above result,

q=477.4W[1W=3.4123Btuh]=(477.4W)(3.4123Btuh1W)=1629.0Btuh

Therefore, in SI units, the amount of radiation emitted from a sunbather is 477.4W and in U.S customary units, it is 1629.0Btuh.

Conclusion:

Hence, in SI units, the amount of radiation emitted from a sunbather is 477.4W and in U.S customary units, it is 1629.0Btuh.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
Note: Please accurately answer it!. I'll give it a thumbs up or down based on the answer quality and precision.  Question: What is the group name of Sample B in problem 3 from the image?. By also using the ASTM flow chart!. This unit is soil mechanics btw
Pick the rural location of a project site in Victoria, and its catchment area-not bigger than 25 sqkm, and given the below information, determine the rainfall intensity for ARI = 5, 50, 100 year storm event. Show all the details of the procedure. Each student must propose different length of streams and elevations. Use fig below as a sample only. Pt. E-ht. 95.0 200m 600m PLD-M. 91.0 300m Pt. C-93.0 300m PL.B-ht. 92.0 PL.F-ht. 96.0 500m Pt. A-M. 91.00 To be deemed satisfactory the solution must include: Q.F1.1.Choice of catchment location Q.F1.2. A sketch displaying length of stream and elevation Q.F1.3. Catchment's IFD obtained from the Buro of Metheorology for specified ARI Q.F1.4.Calculation of the time of concentration-this must include a detailed determination of the equivalent slope. Q.F1.5.Use must be made of the Bransby-Williams method for the determination of the equivalent slope. Q.F1.6.The graphical display of the estimation of intensities for ARI 5,50, 100 must be shown.
QUANTITY SURVEYING

Chapter 11 Solutions

Engineering Fundamentals: An Introduction to Engineering

Knowledge Booster
Background pattern image
Civil Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, civil-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Engineering Fundamentals: An Introduction to Engi...
Civil Engineering
ISBN:9781305084766
Author:Saeed Moaveni
Publisher:Cengage Learning
Text book image
Sustainable Energy
Civil Engineering
ISBN:9781337551663
Author:DUNLAP, Richard A.
Publisher:Cengage,
Text book image
Residential Construction Academy: House Wiring (M...
Civil Engineering
ISBN:9781285852225
Author:Gregory W Fletcher
Publisher:Cengage Learning