Describe two similarities and two differences between electric and magnetic field lines. (Consider such things as where they originate and terminate, how they are related to the direction and strength of the field, whether they are closed curves or lines, and whether there's anything you can say about their flux through a closed surface.). Others

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Answer:

Please see below as the answer is self- explanatory.

Explanation:

  • Similarities:
  1. The field vector is tangent to the field lines at any point of the trajectory.
  2. The density of field lines is proportional to the strength of the field.
  • Differences:
  1. Electrostatic Field lines originate in charge distributions of positive charges and end in charge distributions of negative charges.
  2. Magnetic Field lines are closed lines, due to there are no isolated magnetic charges discovered yet.
  3. Electrostatic Field lines have the direction of the trajectory taken by a positive test charge.
  4. Magnetic Field lines have the direction defined by right-hand rule.
  5. Vector net flux of electrostatic field lines through a closed surface is equal to the net charge enclosed by the surface.
  6. Vector net flux of magnetic field lines through a closed surface is always zero.

Similarities

  • Field vector
  • Density of field lines

Differences

  • Dispersions of positive charges .
  • No separated attractive charges.

Electric and Magnetic field lines.

Similarities:

The field vector is tangent to the field lines at any point of the trajectory. The density of field lines is relative to the quality of the field.

Differences:

Electrostatic Field lines begin in charge dispersions of positive charges and conclusion in charge dispersions of negative charges.

Magnetic Field lines are closed lines, due to there are no separated attractive charges found yet.

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