Martin owns a large parallel plate capacitor of area Acap=1.00m x 1.00m (square). The charge on the upper plate is -8.854x10-¹2C and the charge on the lower plate is +8.854x10-¹2C. In the center of it he marks out an area of dimension 1mm x 1mm square (which he labels with roman numerals as ALI) that is also parallel to the plates. The normal to the area of interest (ALI) points upward, as shown by the orange arrow in the figure (14) What is the electric flux through area "LI" of Marty's capacitor? ● ● . ●

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THQ 18 Electric Flux
MN#
Martin owns a large parallel plate capacitor of area A cap=1.00m x 1.00m (square).
The charge on the upper plate is -8.854x10-¹2C and the charge on the lower plate is +8.854x10-¹²C.
In the center of it he marks out an area of dimension 1mm x 1mm square (which he labels with
roman numerals as ALI) that is also parallel to the plates.
The normal to the area of interest (ALI) points upward, as shown by the orange arrow in the figure
(14) What is the electric flux through area "LI" of Marty's capacitor?
&o=8.854x10-¹2 C²/(N m²)
.
.
●
●
-8.854*10-12C
+
+8.854*10-¹2C
Area "LI"
Transcribed Image Text:THQ 18 Electric Flux MN# Martin owns a large parallel plate capacitor of area A cap=1.00m x 1.00m (square). The charge on the upper plate is -8.854x10-¹2C and the charge on the lower plate is +8.854x10-¹²C. In the center of it he marks out an area of dimension 1mm x 1mm square (which he labels with roman numerals as ALI) that is also parallel to the plates. The normal to the area of interest (ALI) points upward, as shown by the orange arrow in the figure (14) What is the electric flux through area "LI" of Marty's capacitor? &o=8.854x10-¹2 C²/(N m²) . . ● ● -8.854*10-12C + +8.854*10-¹2C Area "LI"
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