For the frame below, F = 9.9 kips, a = 3 ft, b = 5 ft, and c = 3 ft. Determine the magnitude of the vertical force at A (absolute value). Provide the answer in kips to one decimal place. F A to
For the frame below, F = 9.9 kips, a = 3 ft, b = 5 ft, and c = 3 ft. Determine the magnitude of the vertical force at A (absolute value). Provide the answer in kips to one decimal place. F A to
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:**Problem Statement:**
For the frame below, F = 9.9 kips, a = 3 ft, b = 5 ft, and c = 3 ft. Determine the magnitude of the vertical force at A (absolute value). Provide the answer in kips to one decimal place.
**Diagram Explanation:**
The diagram shows a frame structure consisting of two main components:
1. **Members:**
- A horizontal member connected to point A on the left with a fixed support, and a joint at point B on the right.
- A vertical member extends downward from point B with a roller support at the bottom.
2. **Forces and Dimensions:**
- Force \( F \) is applied horizontally to the right at the top of the slanted member, above point B.
- The left segment from A to the joint shows a dimension of \( c = 3 \) ft.
- The right segment displays another \( c = 3 \) ft dimension.
- A vertical dimension is shown between horizontal lines, denoting \( a = 3 \) ft and \( b = 5 \) ft.
**Objective:**
Calculate the vertical force at the fixed support point \( A \) based on the given force \( F \) and dimensions, using static equilibrium principles.
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