Figure (a) gives the magnitude E(x) of the electric fields that have been set up by a battery along a resistive rod of length L = 9.00 mm (see Figure (b)). The vertical scale is set by E, = 5.60 ×10³ V/m. The rod consists of three sections of the same material but with different radii. (The schematic diagram of the figure (b) below does not indicate the different radii.) The radius of section 3 is 2.25 mi What is the radius of (a) section 1 and (b) section 2? E, x = 0 x= L 3 9 х (mm) (а) (b) (a) Number i Units (b) Number Units E (10° V/m)

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Figure (a) gives the magnitude E(x) of the electric fields that have been set up by a battery along a resistive rod of length L = 9.00 mm
(see Figure (b)). The vertical scale is set by E, = 5.60 ×103 V/m. The rod consists of three sections of the same material but with
different radii. (The schematic diagram of the figure (b) below does not indicate the different radii.) The radius of section 3 is 2.25 mm.
What is the radius of (a) section 1 and (b) section 2?
E,
x= 0
x = L
3
x (mm)
(a)
(b)
(a) Number
i
Units
(b) Number
i
Units
Transcribed Image Text:Figure (a) gives the magnitude E(x) of the electric fields that have been set up by a battery along a resistive rod of length L = 9.00 mm (see Figure (b)). The vertical scale is set by E, = 5.60 ×103 V/m. The rod consists of three sections of the same material but with different radii. (The schematic diagram of the figure (b) below does not indicate the different radii.) The radius of section 3 is 2.25 mm. What is the radius of (a) section 1 and (b) section 2? E, x= 0 x = L 3 x (mm) (a) (b) (a) Number i Units (b) Number i Units
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