he answer should have at least 2 decimal places. olve in metric units. Use the following factors in converting the parameters: Metric System English System osi Factor to Use 1 psi = 0.0069 MPa 1 in = 25.40 mm MPa n. mm t-k 1 ft-k = 1.356 kN.m kN.m Reinforcement Conversion Diameter of stirrups indicated in # is the actual diameter to be used ote: All converted units should have 2 decimal places. 1. For the problem shown below, given the loadings with fc' 21 MPa and fyt = 420 MPa. The dead load includes the beam weights. Do not consider the movement of the live loads using #10 stirrups. Find the following: a. What is the value of the factored shear, Vu? b. Concrete Shear capacity, Vc c. Factored Concrete Shear capacity, ØVc d. Shear of capacity of the stirrups, Vs e. Is the section adequate? Prove. f. Is 10mm diameter stirrups adequate? Prove. At what distan ce from the cuppert ctirruns are need?
he answer should have at least 2 decimal places. olve in metric units. Use the following factors in converting the parameters: Metric System English System osi Factor to Use 1 psi = 0.0069 MPa 1 in = 25.40 mm MPa n. mm t-k 1 ft-k = 1.356 kN.m kN.m Reinforcement Conversion Diameter of stirrups indicated in # is the actual diameter to be used ote: All converted units should have 2 decimal places. 1. For the problem shown below, given the loadings with fc' 21 MPa and fyt = 420 MPa. The dead load includes the beam weights. Do not consider the movement of the live loads using #10 stirrups. Find the following: a. What is the value of the factored shear, Vu? b. Concrete Shear capacity, Vc c. Factored Concrete Shear capacity, ØVc d. Shear of capacity of the stirrups, Vs e. Is the section adequate? Prove. f. Is 10mm diameter stirrups adequate? Prove. At what distan ce from the cuppert ctirruns are need?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![The answer should have at least 2 decimal places.
Solve in metric units. Use the following factors in converting the parameters:
English System
psi
Factor to Use
Metric System
1 psi = 0.0069 MPa
1 in = 25.40 mm
MPa
in.
mm
ft-k
1 ft-k = 1.356 kN.m
kN.m
Reinforcement Conversion
Diameter of stirrups indicated in # is the actual diameter to be used
Note: All converted units should have 2 decimal places.
1. For the problem shown below, given the loadings with fc' 21 MPa and fyt = 420 MPa. The dead
load includes the beam weights. Do not consider the movement of the live loads using #10
stirrups.
Find the following:
a. What is the value of the factored shear, Vu?
b. Concrete Shear capacity, Vc
c. Factored Concrete Shear capacity, ØVc
d. Shear of capacity of the stirrups, Vs
e. Is the section adequate? Prove.
f. Is 10mm diameter stirrups adequate? Prove.
g. At what distance from the support, stirrups are need?
h. At what distance from the support, stirrups are not needed?
i. What is the maximum stirrup spacing?
j. What is the designed stirrup spacing?
Problem 8.26
70 mm
6 #29
Wp 20 kN/m
W= 36 kN/m
800 mm
730 mm
450 mm](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2e63b3a0-7a93-439c-ba8a-e728c69cd354%2F2f82c85b-85fe-433f-8cee-346ac19953a9%2Fv29q717_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The answer should have at least 2 decimal places.
Solve in metric units. Use the following factors in converting the parameters:
English System
psi
Factor to Use
Metric System
1 psi = 0.0069 MPa
1 in = 25.40 mm
MPa
in.
mm
ft-k
1 ft-k = 1.356 kN.m
kN.m
Reinforcement Conversion
Diameter of stirrups indicated in # is the actual diameter to be used
Note: All converted units should have 2 decimal places.
1. For the problem shown below, given the loadings with fc' 21 MPa and fyt = 420 MPa. The dead
load includes the beam weights. Do not consider the movement of the live loads using #10
stirrups.
Find the following:
a. What is the value of the factored shear, Vu?
b. Concrete Shear capacity, Vc
c. Factored Concrete Shear capacity, ØVc
d. Shear of capacity of the stirrups, Vs
e. Is the section adequate? Prove.
f. Is 10mm diameter stirrups adequate? Prove.
g. At what distance from the support, stirrups are need?
h. At what distance from the support, stirrups are not needed?
i. What is the maximum stirrup spacing?
j. What is the designed stirrup spacing?
Problem 8.26
70 mm
6 #29
Wp 20 kN/m
W= 36 kN/m
800 mm
730 mm
450 mm
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