q1 = (-5.70x10^-5)  C q2 = (2.700x10^-5) C y = (9.5000x10^0) m Find the force on the charge q2 from q1 for this set up. If the force is downward, include a negative sign to indicate this. Your answer should include: 3 significant figures Units with your answer

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q1 = (-5.70x10^-5)  C

q2 = (2.700x10^-5) C

y = (9.5000x10^0) m

Find the force on the charge q2 from q1 for this set up.
If the force is downward, include a negative sign to indicate this.

Your answer should include:
significant figures
Units 
with your answer

### Setup with 2 Charged Particles

Below is a setup with 2 charged particles -> q1 and q2. They are a distance y apart (see the image below). Below the image, you will find what the variables are for your problem.

#### Image Description

The image illustrates two charged particles, labeled q1 and q2, positioned along the y-axis.

- **q1** is located at a lower position on the y-axis.
- **q2** is located at a higher position on the y-axis.
- The distance between q1 and q2 is labeled as \( y \).

On the vertical y-axis, the following points are depicted:

- \( q1 \) at the bottom
- \( q2 \) at the top
- The vertical distance between q1 and q2 is shown with a bracket labeled \( y \).

This setup is commonly used to analyze the interactions between two charged particles and the resulting forces or fields. Here are the variables involved in the problem:

- \( q1 \): Charge of the particle at the lower position.
- \( q2 \): Charge of the particle at the upper position.
- \( y \): Distance between the two charges along the y-axis.

Understanding this setup is essential for solving problems related to electric forces, potential energy, and electric fields between charged particles.
Transcribed Image Text:### Setup with 2 Charged Particles Below is a setup with 2 charged particles -> q1 and q2. They are a distance y apart (see the image below). Below the image, you will find what the variables are for your problem. #### Image Description The image illustrates two charged particles, labeled q1 and q2, positioned along the y-axis. - **q1** is located at a lower position on the y-axis. - **q2** is located at a higher position on the y-axis. - The distance between q1 and q2 is labeled as \( y \). On the vertical y-axis, the following points are depicted: - \( q1 \) at the bottom - \( q2 \) at the top - The vertical distance between q1 and q2 is shown with a bracket labeled \( y \). This setup is commonly used to analyze the interactions between two charged particles and the resulting forces or fields. Here are the variables involved in the problem: - \( q1 \): Charge of the particle at the lower position. - \( q2 \): Charge of the particle at the upper position. - \( y \): Distance between the two charges along the y-axis. Understanding this setup is essential for solving problems related to electric forces, potential energy, and electric fields between charged particles.
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