nning along the x axis from the origin es electric charge with uniform density. coordinates (x = 80.0 cm, y= 80.0 cm), tes electric potential 100 V. Now we ad ent along the y axis, running from the c carrying the same amount of charge wi n density, At the same point P, the pair %3D %3D
nning along the x axis from the origin es electric charge with uniform density. coordinates (x = 80.0 cm, y= 80.0 cm), tes electric potential 100 V. Now we ad ent along the y axis, running from the c carrying the same amount of charge wi n density, At the same point P, the pair %3D %3D
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
Transcribed Image Text:A filament running along the x axis from the origin to x =
80.0 cm carries electric charge with uniform density. At the
point P with coordinates (x 80.0cm, y= 80.0 cm), this
filament creates electric potential 100 V. Now we add
another filament along the y axis, running from the origin to
y%3D 80.0 cm, carrying the same amount of charge with the
same uniform density. At the same point P, the pair of
filaments creates potential:
1. greater than 200 V
2.
200 V.
3. 100 V.
4.
between 0 and 200 V
5. 0.
.
-1
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