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 29 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
Great answer, keep it coming :)


scottmt

  • Member
  • Posts: 322
Reply 3 on: Yesterday
:D TYSM

 

Did you know?

The first monoclonal antibodies were made exclusively from mouse cells. Some are now fully human, which means they are likely to be safer and may be more effective than older monoclonal antibodies.

Did you know?

Nitroglycerin is used to alleviate various heart-related conditions, and it is also the chief component of dynamite (but mixed in a solid clay base to stabilize it).

Did you know?

The newest statin drug, rosuvastatin, has been called a superstatin because it appears to reduce LDL cholesterol to a greater degree than the other approved statin drugs.

Did you know?

Patients who cannot swallow may receive nutrition via a parenteral route—usually, a catheter is inserted through the chest into a large vein going into the heart.

Did you know?

Green tea is able to stop the scent of garlic or onion from causing bad breath.

For a complete list of videos, visit our video library