Part A Determine the components of reaction at hinge A if hinge B resists only forces in the x and y directions and A resists forces in the x, y, z directions. Enter the x, y, and z components of the reaction using three significant figures separated by commas. ΑΣφ ? vec Ag, Ay, Az = lb Submit Request Answer Part B Determine the components of reaction at hinge B if hinge B resists only forces in the x and y directions and A resists forces in the x, Y, z directions. Enter the x and y components of the reaction using three significant figures separated by a comma. vec Br, By = lb
Part A Determine the components of reaction at hinge A if hinge B resists only forces in the x and y directions and A resists forces in the x, y, z directions. Enter the x, y, and z components of the reaction using three significant figures separated by commas. ΑΣφ ? vec Ag, Ay, Az = lb Submit Request Answer Part B Determine the components of reaction at hinge B if hinge B resists only forces in the x and y directions and A resists forces in the x, Y, z directions. Enter the x and y components of the reaction using three significant figures separated by a comma. vec Br, By = lb
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
Related questions
Question

Transcribed Image Text:**The 80-lb Door and Its Center of Gravity**
This educational module provides an analysis of the positioning of the center of gravity in a door:
- **Description**: The diagram illustrates an 80-pound door with its center of gravity located at point \( G \).
**Diagram Explanation**:
- **Positioning and Dimensions**:
- The door is shown in a three-dimensional view.
- The door's dimensions are marked along the \( x \), \( y \), and \( z \) axes.
- The door is inclined at an angle of 30° from the \( y \)-axis.
- **Measurements**:
- The vertical dimension is divided into three segments: 18 inches from the top to point \( B \), 24 inches between points \( B \) and the center of gravity \( G \), and 18 inches from \( G \) to the bottom at point \( A \).
- The horizontal \( z \)-dimension from the wall edge to point \( B \) is 18 inches.
This visual and textual breakdown is designed to help you understand how the center of gravity impacts door stability and motion dynamics.
![**Part A**
**Question:**
Determine the components of reaction at hinge \( A \) if hinge \( B \) resists only forces in the \( x \) and \( y \) directions and \( A \) resists forces in the \( x, y, z \) directions.
**Instruction:**
Enter the \( x, y, \) and \( z \) components of the reaction using three significant figures separated by commas.
**Input Box:**
\( A_x, A_y, A_z = \) [Input Field] lb
**Buttons:**
- Submit
- Request Answer
---
**Part B**
**Question:**
Determine the components of reaction at hinge \( B \) if hinge \( B \) resists only forces in the \( x \) and \( y \) directions and \( A \) resists forces in the \( x, y, z \) directions.
**Instruction:**
Enter the \( x \) and \( y \) components of the reaction using three significant figures separated by a comma.
**Input Box:**
\( B_x, B_y = \) [Input Field] lb
**Buttons:**
- Submit
- Request Answer](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fcc2304c8-1974-4b4c-9b89-46bbcd5de840%2Fec81937a-3993-422b-b723-b45f46f493af%2Fzcj9bob_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Part A**
**Question:**
Determine the components of reaction at hinge \( A \) if hinge \( B \) resists only forces in the \( x \) and \( y \) directions and \( A \) resists forces in the \( x, y, z \) directions.
**Instruction:**
Enter the \( x, y, \) and \( z \) components of the reaction using three significant figures separated by commas.
**Input Box:**
\( A_x, A_y, A_z = \) [Input Field] lb
**Buttons:**
- Submit
- Request Answer
---
**Part B**
**Question:**
Determine the components of reaction at hinge \( B \) if hinge \( B \) resists only forces in the \( x \) and \( y \) directions and \( A \) resists forces in the \( x, y, z \) directions.
**Instruction:**
Enter the \( x \) and \( y \) components of the reaction using three significant figures separated by a comma.
**Input Box:**
\( B_x, B_y = \) [Input Field] lb
**Buttons:**
- Submit
- Request Answer
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