Below is a trapezoidal beam with 3-28mm reinforcing bars at the bottom. Using the design properties of fc' = 21MPa, fs = 140MPa, n = 7, 50mm effective cover, determine the following: Note: Assume the beam has cracked. 650 50 150 500 200 150 What is the Moment of Inertia of the Transformed section of the beam? Express your answer in mm4.
Below is a trapezoidal beam with 3-28mm reinforcing bars at the bottom. Using the design properties of fc' = 21MPa, fs = 140MPa, n = 7, 50mm effective cover, determine the following: Note: Assume the beam has cracked. 650 50 150 500 200 150 What is the Moment of Inertia of the Transformed section of the beam? Express your answer in mm4.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Below is a trapezoidal beam with 3-28mm reinforcing bars at the bottom. Using the design
properties of fc' = 21MPa, fs = 140MPa, n = 7, 50mm effective cover, determine the following:
Note: Assume the beam has cracked.
650
50
150
500
200
150
What is the Moment of Inertia of the Transformed section of the beam? Express your answer in
mm4.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faf9b4d18-f29e-49d5-ad39-68fb76c54727%2F65164ed1-e003-442a-901a-d45987cc1b91%2Fttjkf9_processed.png&w=3840&q=75)
Transcribed Image Text:Below is a trapezoidal beam with 3-28mm reinforcing bars at the bottom. Using the design
properties of fc' = 21MPa, fs = 140MPa, n = 7, 50mm effective cover, determine the following:
Note: Assume the beam has cracked.
650
50
150
500
200
150
What is the Moment of Inertia of the Transformed section of the beam? Express your answer in
mm4.
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