Electrostatics problem, kinda confusing

In summary, to plot the electric field along the x-axis for two charges located at x=-a and x=+a, use a spreadsheet and choose a reasonable range for the plot, such as +/- 5 or 10 a's. The rest of the problem involves applying Coulomb's Law to calculate the electric field and dealing with the infinite values at the locations of the charges.
  • #1
djlightsout06
6
0
Two charges, one -q and one +q are located at x=-a and x=+a, respectively. Use a spreadsheet to plot the electric field along the x asix. Part of this problem is choosing a reasonable range for the plot.

How do I go about doing this?
 
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  • #2
How about a range of about +/- 5 or 10 a's?
 
  • #3
what about the rest of the problem. I'm having a lot of problems grasping the concept of E-fields and stuff.
 
  • #4
For the rest of the problem simply apply Coulomb's Law to calculate the electric field produced by the two charges. Your difficulty will be that at the locations of the two charges the field will be infinite and your spreadsheet will not like that!
 

Related to Electrostatics problem, kinda confusing

What is electrostatics?

Electrostatics is a branch of physics that deals with the study of electric charges at rest.

What is an electrostatics problem?

An electrostatics problem is a question or scenario that involves the use of principles and equations from electrostatics to solve for unknown quantities.

Why is electrostatics important?

Electrostatics is important because it helps us understand the behavior of electric charges and how they interact with each other. This knowledge is essential in many areas of science and technology, including electronics, telecommunications, and energy production.

What are some common types of electrostatics problems?

Some common types of electrostatics problems include finding the electric field or potential at a given point, determining the force between two charges, and calculating the capacitance of a system.

How can I approach solving an electrostatics problem?

To solve an electrostatics problem, it is important to first identify the given quantities, determine what is being asked, and then apply the relevant equations and principles from electrostatics. It may also be helpful to draw diagrams and use units consistently throughout the problem.

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