Consider the beam and loading shown in the figure. Given: P = 454 lb. A M\max |--4 ft = lb P lb-ft с 8 ft Determine the maximum absolute values of the shear and bending moment. |V| max 150 lb/ft [TIT D + 4 ft B
Consider the beam and loading shown in the figure. Given: P = 454 lb. A M\max |--4 ft = lb P lb-ft с 8 ft Determine the maximum absolute values of the shear and bending moment. |V| max 150 lb/ft [TIT D + 4 ft B
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![**Beam Analysis and Load Calculation**
Consider the beam and loading shown in the figure. Given: \( P = 454 \, \text{lb} \).
**Diagram Description:**
- A simply-supported beam is depicted.
- Point A on the left side is supported by a fixed support.
- Point B on the right side is supported by a roller support.
- A concentrated load \( P \) of 454 lb acts downward at point C, 4 feet from point A.
- A uniformly distributed load of 150 lb/ft starts at point D and continues to point B, covering a span of 4 feet.
- The total length of the beam from A to B is 16 feet, with the segments measuring 4 ft, 8 ft, and 4 ft respectively.
**Objective:**
Determine the maximum absolute values of the shear and bending moment in the beam.
\[ |V|_{\text{max}} = \boxed{ \, } \, \text{lb} \]
\[ |M|_{\text{max}} = \boxed{ \, } \, \text{lb-ft} \]](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9a80861c-f7b1-4a5c-9dd8-fa536dc93a77%2F34651f27-e381-414f-9b9f-9b7bb5f2534c%2Fpdyqxc_processed.png&w=3840&q=75)
Transcribed Image Text:**Beam Analysis and Load Calculation**
Consider the beam and loading shown in the figure. Given: \( P = 454 \, \text{lb} \).
**Diagram Description:**
- A simply-supported beam is depicted.
- Point A on the left side is supported by a fixed support.
- Point B on the right side is supported by a roller support.
- A concentrated load \( P \) of 454 lb acts downward at point C, 4 feet from point A.
- A uniformly distributed load of 150 lb/ft starts at point D and continues to point B, covering a span of 4 feet.
- The total length of the beam from A to B is 16 feet, with the segments measuring 4 ft, 8 ft, and 4 ft respectively.
**Objective:**
Determine the maximum absolute values of the shear and bending moment in the beam.
\[ |V|_{\text{max}} = \boxed{ \, } \, \text{lb} \]
\[ |M|_{\text{max}} = \boxed{ \, } \, \text{lb-ft} \]
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