bartleby

Videos

Textbook Question
Book Icon
Chapter 11, Problem 9P

Calculate the R-value for the following materials:

a. 4 in. thick brick

b. 10 cm thick brick

c. 12 in. thick concrete slab

d. 20 cm thick concrete slab

e. 1 cm thick human fat layer

(a)

Expert Solution
Check Mark
To determine

Find the R-value for 4in thick brick.

Answer to Problem 9P

The R-value for 4in thick brick is 0.10m2KW.

Explanation of Solution

Given data:

The thickness of the brick, L=4in.

From table 11.3 in the textbook, the thermal conductivity of the brick, k=1.0Wmk.

Formula used:

The formula to find R-value is,

R=Lk (1)

Here,

L is the thickness of the material, and

k is the thermal conductivity of the material.

Calculation:

Substitute 4in for L, and 1.0Wmk for k in equation (1) to find R,

R=4in1.0Wmk[1in=0.0254m]=(4in)(0.0254m1in)1.0Wmk=(4×0.0254)m1.0WmkR=0.10m2KW

Therefore, R-value for 4in thick brick is 0.10m2KW.

Conclusion:

Hence, the R-value for 4in thick brick is 0.10m2KW.

(b)

Expert Solution
Check Mark
To determine

Find the R-value for 10cm thick brick.

Answer to Problem 9P

The R-value for 10cm thick brick is 0.10m2KW.

Explanation of Solution

Given data:

The thickness of the brick, L=10cm.

Calculation:

Substitute 10cm for L, and 1.0Wmk for k in equation (1) to find R,

R=10cm1.0Wmk[1m=100cm]=(10cm)(1m100cm)1.0Wmk=0.1m1.0WmkR=0.10m2KW

Therefore, R-value for 10cm thick brick is 0.10m2KW.

Conclusion:

Hence, the R-value for 10cm thick brick is 0.10m2KW.

(c)

Expert Solution
Check Mark
To determine

Find the R-value for 12in thick concrete slab.

Answer to Problem 9P

The R-value for 12in thick concrete slab is 0.22m2KW.

Explanation of Solution

Given data:

The thickness of the concrete slab, L=12in.

From Table 11.3 in the textbook, the thermal conductivity of the concrete slab, k=1.4Wmk.

Calculation:

Substitute 12in for L, and 1.4Wmk for k in equation (1) to find R,

R=12in1.4Wmk[1in=0.0254m]=(12in)(0.0254m1in)1.4Wmk=(12×0.0254)m1.4WmkR=0.22m2KW

Therefore, R-value for 12in thick concrete slab is 0.22m2KW.

Conclusion:

Hence, the R-value for 12in thick concrete slab is 0.22m2KW.

(d)

Expert Solution
Check Mark
To determine

Find the R-value for 20cm thick concrete slab.

Answer to Problem 9P

The R-value for 20cm thick concrete slab is 0.14m2KW.

Explanation of Solution

Given data:

The thickness of the concrete slab, L=20cm.

Calculation:

Substitute 20cm for L, and 1.4Wmk for k in equation (1) to find R,

R=20cm1.4Wmk[1m=100cm]=20cm×1m100cm1.4Wmk=0.2m1.4WmkR=0.14m2KW

Therefore, R-value for 20cm thick concrete slab is 0.14m2KW.

Conclusion:

Hence, the R-value for 20cm thick concrete slab is 0.14m2KW.

(e)

Expert Solution
Check Mark
To determine

Find the R-value for 1cm thick human fat layer.

Answer to Problem 9P

The R-value for 1cm thick human fat layer is 0.05m2KW.

Explanation of Solution

Given data:

The thickness of the human fat layer, L=1cm.

From table 11.3 in the textbook, the thermal conductivity of the human fat layer, k=0.2Wmk.

Calculation:

Substitute 1cm for L, and 0.2Wmk for k in equation (1) to find R,

R=1cm0.2Wmk[1m=100cm]=(1cm)(1m100cm)0.2Wmk=0.01m0.2WmkR=0.05m2KW

Therefore, R-value for 1cm thick human fat layer is 0.05m2KW.

Conclusion:

Hence, the R-value for 1cm thick human fat layer is 0.05m2KW.

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
A sample of Achilles saturated with water has a mass of 1710 g. After heating in an oven, a constant mass of 1815 g is obtained. The density of solid Achilles seeds is 2.78 g/cm3. We are asked to calculate: a) The water content and void ratio b) The porosity and specific gravity of the clayey soil c) The wet density of the clayey soil, the corresponding dry density and dry density
8. A prestressed concrete beam is subjected to the following stress distributions: Pi is the initial prestressing force, Pe is the effective prestressing force, M, is the bending moment due to self- weight, Ma and M, are the dead load and live load bending moment, respectively. The concrete has the following properties: fr = 6000 psi and fri = 4200 psi +250 -85 -2500 +550 Pe+ Mo+Ma+Mi P alone P₁+ Mo -2450 -3500 Stress at midspan +210 +250 P, alone Pe alone -2500 -3500 Stress at ends Using Table 22.1, evaluate whether the stresses at the center of the span and the end of the span comply with the permissible stress limits. The beam is classified as U-class. Provide justifications for each condition listed in the table. Note: Calculated stresses are to be taken from the above diagram, and permissible stresses are to be calculated using Table 22.1. Compressive stresses immediately after transfer Tensile stresses immediately after transfer Compressive stresses under sustained and total…
10. A short column is subjected to an eccentric loading. The axial load P = 1000 kips and the eccentricity e = 12 in. The material strengths are fy = 60 ksi and f = 6000 psi. The Young's modulus of steel is 29000 ksi. (a) Fill in the blanks in the interaction diagram shown below. (2pts each, 10pt total) Po Pn (1) failure range H 3" 30" Ast 6 No. 10 bars = P 22" I e H 3" (4) e = e small Load path for given e Radial lines show constant (2) eb (3) e large failure range Mn (5) e= Mo (b) Compute the balanced failure point, i.e., P and Mb.

Chapter 11 Solutions

WebAssign Homework Only for Moaveni's Engineering Fundamentals: An Introduction to Engineering, SI Edition, 6th Edition, [Instant Access]

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
Fundamentals Of Construction Estimating
Civil Engineering
ISBN:9781337399395
Author:Pratt, David J.
Publisher:Cengage,
Text book image
Materials Science And Engineering Properties
Civil Engineering
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Cengage Learning
Text book image
Solid Waste Engineering
Civil Engineering
ISBN:9781305635203
Author:Worrell, William A.
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
Aggregates: Properties; Author: nptelhrd;https://www.youtube.com/watch?v=49yGZYeokKM;License: Standard YouTube License, CC-BY