Please help finding Bx, Az,Ax for this problem. Cy=450N, Cz=268N, Bz=896N

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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Please help finding Bx, Az,Ax for this problem. Cy=450N, Cz=268N, Bz=896N

**Learning Goal:**

To analyze a rod assembly in three-dimensional space and determine the support reactions by using the equations of equilibrium for a rigid body.

The rod assembly shown has smooth journal bearings at \( A, B, \) and \( C \). The forces \( F_1 = 500 \, \text{N} \), \( F_2 = 440 \, \text{N} \), \( F_3 = 450 \, \text{N} \), and \( F_4 = 825 \, \text{N} \) are applied as shown in the figure. The geometry of the rod assembly is given as \( a = 0.950 \, \text{m} \), \( b = 0.550 \, \text{m} \), and \( c = 0.800 \, \text{m} \). Neglect the weight of the rod.

**Diagram Explanation:**

- The diagram illustrates the rod assembly in the three-dimensional coordinate system, labeled with axes \( x, y, \) and \( z \).
- The forces \( F_1, F_2, F_3, \) and \( F_4 \) are applied at different points along the assembly.
- Points \( A, B, \) and \( C \) indicate where the bearings are located.
- Distances \( a, b, \) and \( c \) represent specific measurements of the assembly.

**Problem Statement:**

1. **Determine the magnitude of the \( x \) component of the reaction on the rod at \( B \).**
   - Express your answer to three significant figures and include the appropriate units.
   
   - Input Field: \( B_x = \) [Value] [Units]
   - [Submit Button]

2. **Part E: Finding the \( z \) component of the reaction at \( A \)**
   - Determine the magnitude of the \( z \) component of the reaction on the rod at \( A \).
   - Express your answer to three significant figures and include the appropriate units.
   
   - Input Field: \( A_z = \) [Value] [Units]
   - [Submit Button]
Transcribed Image Text:**Learning Goal:** To analyze a rod assembly in three-dimensional space and determine the support reactions by using the equations of equilibrium for a rigid body. The rod assembly shown has smooth journal bearings at \( A, B, \) and \( C \). The forces \( F_1 = 500 \, \text{N} \), \( F_2 = 440 \, \text{N} \), \( F_3 = 450 \, \text{N} \), and \( F_4 = 825 \, \text{N} \) are applied as shown in the figure. The geometry of the rod assembly is given as \( a = 0.950 \, \text{m} \), \( b = 0.550 \, \text{m} \), and \( c = 0.800 \, \text{m} \). Neglect the weight of the rod. **Diagram Explanation:** - The diagram illustrates the rod assembly in the three-dimensional coordinate system, labeled with axes \( x, y, \) and \( z \). - The forces \( F_1, F_2, F_3, \) and \( F_4 \) are applied at different points along the assembly. - Points \( A, B, \) and \( C \) indicate where the bearings are located. - Distances \( a, b, \) and \( c \) represent specific measurements of the assembly. **Problem Statement:** 1. **Determine the magnitude of the \( x \) component of the reaction on the rod at \( B \).** - Express your answer to three significant figures and include the appropriate units. - Input Field: \( B_x = \) [Value] [Units] - [Submit Button] 2. **Part E: Finding the \( z \) component of the reaction at \( A \)** - Determine the magnitude of the \( z \) component of the reaction on the rod at \( A \). - Express your answer to three significant figures and include the appropriate units. - Input Field: \( A_z = \) [Value] [Units] - [Submit Button]
**Part F - Finding the x component of the reaction at A**

Determine the magnitude of the x component of the reaction on the rod at A.

**Express your answer to three significant figures and include the appropriate units.**

- [View Available Hint(s)]

Input field:

\( A_x = \) [Value] [Units]

[Submit]
Transcribed Image Text:**Part F - Finding the x component of the reaction at A** Determine the magnitude of the x component of the reaction on the rod at A. **Express your answer to three significant figures and include the appropriate units.** - [View Available Hint(s)] Input field: \( A_x = \) [Value] [Units] [Submit]
Expert Solution
Step 1

MZ=0-440×0.950 - Bx×1.90 - 450×0.950 + 450×1.90 = 0Bx=5 N

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