The figure shows two uniformly charged spheres. (Figure 1) Part A What is the potential difference between points a and b? Express your answer to two significant figures and include the appropriate units. Figure 1 of 1 HA AV = Value V Submit Previous Answers Request Answer 100 cm 100 nC X Incorrect; Try Again; 5 attempts remaining 25 nC b. a. 10 cm 60 cm Part B Which point is at the higher potential? Hint: The potential at any point is the superposition of the potentials due to all charges

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Chapter1: Units, Trigonometry. And Vectors
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25.66. Please help with parts A and B of this problem attached below  

Part B asks whether A or B is at the higher potential. Thank you! 

The image displays a problem involving two uniformly charged spheres, as shown in Figure 1.

**Figure Explanation:**
- The figure depicts two spheres. The larger sphere has a charge of 100 nC and a radius of 60 cm. The smaller sphere has a charge of 25 nC and a radius of 10 cm.
- The centers of the two spheres are separated by a distance of 100 cm.
- Two points, labeled "a" and "b," are marked near each sphere. 

**Question Details:**
- **Part A:** The task is to find the potential difference between points a and b.
  - Instructions: Express the answer to two significant figures and include the appropriate units.
  - Input Field: \(\Delta V = \text{Value} \, \text{V}\)
  - Feedback: "Incorrect; Try Again; 5 attempts remaining."

- **Part B:** The task is to determine which point is at a higher potential.
  - Hint: The potential at any point is the superposition of the potentials due to all charges.

This exercise focuses on applying electrostatic concepts to calculate electric potential differences and understand potential distribution around charged objects.
Transcribed Image Text:The image displays a problem involving two uniformly charged spheres, as shown in Figure 1. **Figure Explanation:** - The figure depicts two spheres. The larger sphere has a charge of 100 nC and a radius of 60 cm. The smaller sphere has a charge of 25 nC and a radius of 10 cm. - The centers of the two spheres are separated by a distance of 100 cm. - Two points, labeled "a" and "b," are marked near each sphere. **Question Details:** - **Part A:** The task is to find the potential difference between points a and b. - Instructions: Express the answer to two significant figures and include the appropriate units. - Input Field: \(\Delta V = \text{Value} \, \text{V}\) - Feedback: "Incorrect; Try Again; 5 attempts remaining." - **Part B:** The task is to determine which point is at a higher potential. - Hint: The potential at any point is the superposition of the potentials due to all charges. This exercise focuses on applying electrostatic concepts to calculate electric potential differences and understand potential distribution around charged objects.
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