The electric potential, which is a scalar field, may be represented graphically by equipotential curves. The lines of electric field may be obtained from those equipotentials.

Four rectangles have been placed on the graph below. Assess the region of the graph where the magnitude of the electric field is greatest. Drag the label Emax to the rectangle in that region. Assess the region of the graph where the magnitude of the electric field is smallest. Drag the label Emin to the rectangle in that region.

The electric potential which is a scalar field may be represented graphically by equipotential curves The lines of electric field may be obtained from those equ class=

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The region with high electric potential  (80 V and 70 V) will have high electric field while the region with low electric potential (20 V) will have low electric field.

What is Electric field?

Electric field is the field that surrounds electrically charged particles and exerts force on all other charged particles in the field.

Relationship between electric potential and electric field

E = V/d

where;

  • V is electric potential (V)
  • E is electric field (V/m)
  • d is the distance (m)

Since electric field is directly proportional to electric potential, the region with high electric potential  (80 V and 70 V) will have high electric field while the region with low electric potential (20 V) will have low electric field.

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