Part A What is the strength of the electric field at the position indicated by the dot in the figure? (Figure 1). Let r = 8.0 cm . Express your answer to two significant figures and include the appropriate units. ? E = Value Units Submit Previous Answers Request Answer X Incorrect; Try Again; 12 attempts remaining Part B What is the direction of the electric field at the position indicated by the dot in the figure? Horizontal to the left. Horizontal to the right. 45° below horizontal to the left. 45° above horizontal to the left. Submit Previous Answers v Correct Provide Feedback Next > Figure 1 of 1 3.0 nC+) r 3.0 nC(+

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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### Understanding Electric Fields

#### Part A
**Question:**
What is the strength of the electric field at the position indicated by the dot in the figure? Refer to Figure 1. Given \( r = 8.0 \, \text{cm} \).

**Instructions:**
Express your answer to two significant figures and include the appropriate units.

**Input Box:**
- E = [Value] [Units]

**Feedback:**
- Incorrect; Try Again; 12 attempts remaining

---

#### Part B
**Question:**
What is the direction of the electric field at the position indicated by the dot in the figure?

**Options:**
- Horizontal to the left.
- Horizontal to the right.
- 45° below horizontal to the left.
- 45° above horizontal to the left.

**Feedback:**
- Correct

---

### Figure Description
The figure shows two identical positive charges, each with a magnitude of \( 3.0 \, \text{nC} \), positioned symmetrically above and below a central dot, separated by a distance \( r \). The dot's position is equidistant from both charges horizontally, highlighting the symmetry and indicating where the electric field is to be calculated.

- **Charge Configuration:**
  - Top charge: \( 3.0 \, \text{nC} \), labeled as positive.
  - Bottom charge: \( 3.0 \, \text{nC} \), labeled as positive.
  
- **Distance:**
  - Vertical distance from each charge to the central dot is \( r \).

This setup illustrates the calculation of electric field strength and its directional properties at a specific location influenced by multiple charges.
Transcribed Image Text:### Understanding Electric Fields #### Part A **Question:** What is the strength of the electric field at the position indicated by the dot in the figure? Refer to Figure 1. Given \( r = 8.0 \, \text{cm} \). **Instructions:** Express your answer to two significant figures and include the appropriate units. **Input Box:** - E = [Value] [Units] **Feedback:** - Incorrect; Try Again; 12 attempts remaining --- #### Part B **Question:** What is the direction of the electric field at the position indicated by the dot in the figure? **Options:** - Horizontal to the left. - Horizontal to the right. - 45° below horizontal to the left. - 45° above horizontal to the left. **Feedback:** - Correct --- ### Figure Description The figure shows two identical positive charges, each with a magnitude of \( 3.0 \, \text{nC} \), positioned symmetrically above and below a central dot, separated by a distance \( r \). The dot's position is equidistant from both charges horizontally, highlighting the symmetry and indicating where the electric field is to be calculated. - **Charge Configuration:** - Top charge: \( 3.0 \, \text{nC} \), labeled as positive. - Bottom charge: \( 3.0 \, \text{nC} \), labeled as positive. - **Distance:** - Vertical distance from each charge to the central dot is \( r \). This setup illustrates the calculation of electric field strength and its directional properties at a specific location influenced by multiple charges.
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