1. Calculate the reinforcing steel for a wall with the following dimensions: height 10 ft., long 25 ft. the spacing between rods is 10 ft. both longitudinal and vertical. Is necessary leave a spacing of 3 inch in each edge. If # 5 - Weight 1,043 pounds / ft. calculate the total of pounds with 7% of "waste" 25' # 5@8" O.C. (B) #5@12" O.C.
1. Calculate the reinforcing steel for a wall with the following dimensions: height 10 ft., long 25 ft. the spacing between rods is 10 ft. both longitudinal and vertical. Is necessary leave a spacing of 3 inch in each edge. If # 5 - Weight 1,043 pounds / ft. calculate the total of pounds with 7% of "waste" 25' # 5@8" O.C. (B) #5@12" O.C.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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**Problem Statement:**
1. Calculate the reinforcing steel for a wall with the following dimensions: height 10 ft., length 25 ft. The spacing between rods is 10 ft. both longitudinal and vertical. It is necessary to leave a spacing of 3 inches on each edge. If #5 – Weight 1,043 pounds/ft., calculate the total of pounds with 7% of "waste."
**Diagram Explanation:**
The diagram shows a rectangle representing the wall with the dimensions labeled as 10 feet in height and 25 feet in length.
- The rectangle is bordered with solid lines, indicating the edges of the wall where spacing is required.
- Vertical and horizontal dashed lines inside the rectangle represent the placement of the reinforcing rods.
- Label "#5@8' O.C. (B)" indicates that in one direction, reinforcing bars are placed every 8 feet on center.
- Label "#5@12' O.C." indicates that in the other direction, reinforcing bars are placed every 12 feet on center.
**Notes:**
- "O.C." stands for "on center," which refers to the distance from the center of one rod to the center of the next.
- The problem involves calculating the amount of reinforcing steel needed while accounting for a specified percentage of waste.
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