The expression of the electric potential is given to be: V(x, y, 2) - 12xy + 8x + 92 What is the x-component of the electric feld vector (EJ? O-182 O-12y - 8 O-24xy O12y + 8 *What is the y-component of the electne field vector (E,? O-24xy O-12y - 8 024xy O-182 What is the z-component of the electric feld vector (E.J? O18: O-182 O-12y - 8 O-24xy What is the electric field at the origin (0; 0; 0)?. ECO; 0,0) = Which of the following represents the relation between the electric field and the electrie potential? OV = -VE OE - -öv Ov = VE OË - Vv

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The expression of the electric potential is
given to be: V(x, y, z) = 12xy + 8x + 9:
What is the x-component of
the electric field vector (EJ?
O-182
O-12y - 8
O-24xy
O12y + 8
*What is the y-component of
the electne field vector (E,?
O-24xy
O-12y - 8
024xy
O-182
What is the z-component of
the electric field vector (EJ?
O182
O-182
O-12y - 8
O-24xy
What is the electric field at the
origin (0; 0; 0)?
Ē(0; 0:0) =
Which of the following
represents the relation between the
electric field and the electric potential?
Ov = -VE
OE = -Vv
OV = VE
OË = Vv
Transcribed Image Text:The expression of the electric potential is given to be: V(x, y, z) = 12xy + 8x + 9: What is the x-component of the electric field vector (EJ? O-182 O-12y - 8 O-24xy O12y + 8 *What is the y-component of the electne field vector (E,? O-24xy O-12y - 8 024xy O-182 What is the z-component of the electric field vector (EJ? O182 O-182 O-12y - 8 O-24xy What is the electric field at the origin (0; 0; 0)? Ē(0; 0:0) = Which of the following represents the relation between the electric field and the electric potential? Ov = -VE OE = -Vv OV = VE OË = Vv
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