find the value of the magnetic field in microteslas (with positive values pointing out of the page and negative values pointing into the page) using a value of the inner radius R1 = 2.73 cm.
find the value of the magnetic field in microteslas (with positive values pointing out of the page and negative values pointing into the page) using a value of the inner radius R1 = 2.73 cm.
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For problem 8, find the value of the magnetic field in microteslas (with positive values pointing out of the page and negative values
pointing into the page) using a value of the inner
radius R1 = 2.73 cm. (5 sig figs)

Transcribed Image Text:### Question 1
**Problem Statement:**
For problem 29.8, find the value of the magnetic field in microteslas. Use positive values for the magnetic field pointing out of the page and negative values for the field pointing into the page. Use an inner radius \( R1 = 2.73 \, \text{cm} \). Ensure your answer has 5 significant figures.
**Points Available:** 10 points
**Action Required:**
Provide your calculated answer in the provided space. Click "Save Answer" when complete.
---
This question is part of a test for the course "202240-PH-106-004" with a due date for Homework 10, Chapter 29 on October 31st.

Transcribed Image Text:**Problem 8:**
In Fig. 29-40, two semicircular arcs have radii \( R_2 = 7.80 \, \text{cm} \) and \( R_1 = 3.15 \, \text{cm} \). They carry a current \( i = 0.281 \, \text{A} \) and share the same center of curvature \( C \).
What are the (a) magnitude and (b) direction (into or out of the page) of the net magnetic field at \( C \)?
**Explanation of the Diagram:**
The diagram shows two semicircular arcs centered at point \( C \). The arcs have radii \( R_2 \) and \( R_1 \). Current \( i \) flows counterclockwise through the arcs. The arcs are concentric, and their center is labeled \( C \).
**Figure 29-40, Problem 8**
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