This topic contains a solution. Click here to go to the answer

Author Question: If a negatively charged particle is placed at point B in the figure below and given a very small ... (Read 18 times)

stephzh

  • Hero Member
  • *****
  • Posts: 556
If a negatively charged particle is placed at point B in the figure below and given a very small kick to the right, what will its subsequent motion be? It will
 
Question 2

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 />
  1.go to the right and not return.
  2.go to the left.
  3.remain at point B.
  4.oscillate around point B."



Related Topics

Need homework help now?

Ask unlimited questions for free

Ask a Question
Marked as best answer by a Subject Expert

vseab

  • Sr. Member
  • ****
  • Posts: 323
Answer to Question 1



Answer to Question 2

4




stephzh

  • Member
  • Posts: 556
Reply 2 on: Jul 28, 2018
Wow, this really help


ebonylittles

  • Member
  • Posts: 318
Reply 3 on: Yesterday
:D TYSM

 

Did you know?

Each year in the United States, there are approximately six million pregnancies. This means that at any one time, about 4% of women in the United States are pregnant.

Did you know?

The Centers for Disease Control and Prevention (CDC) was originally known as the Communicable Disease Center, which was formed to fight malaria. It was originally headquartered in Atlanta, Georgia, since the Southern states faced the worst threat from malaria.

Did you know?

Approximately 500,000 babies are born each year in the United States to teenage mothers.

Did you know?

As the western states of America were settled, pioneers often had to drink rancid water from ponds and other sources. This often resulted in chronic diarrhea, causing many cases of dehydration and death that could have been avoided if clean water had been available.

Did you know?

Aspirin may benefit 11 different cancers, including those of the colon, pancreas, lungs, prostate, breasts, and leukemia.

For a complete list of videos, visit our video library