3) Point charges q = 30 µC, q,--20 µC, and q, = 10 µC are located in Figure 1. A rod with length 2 m has a total charge q=100 uC and a uniform linear charge density 2=50 µC/m in Figure 2. (a) Find the potential at P in Figure 1. (b) Find the total potential energy of charge system in Figure 1. (c) Find the total potential at P in Figure 2. (k = 9x10° N×m²/C?, and u= 10-6) %3D λ-50 μCm 91 = 30 µC 91 = 30 µC %3D !! L= 2 m 0.3 m 0.3 m 0.5 m q3 = 10 µC 0.2 m- 0.2 m 0.2 m 0.2 m 0.3 m 0.3 m 0.5 m q = -20 µC 92=-20 uC Figure 2 q=100 µC Figure 1 15 19

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ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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7 Q
S Sayfa görünumü
A Sesli oku
E Vurgula
3) Point charges q,
L= 2 m has a total charge q-100 µC and a uniform linear charge density 2 = 50 µC/m in Figure 2.
(a) Find the potential at Pin Figure 1.
(b) Find the total potential energy of charge system in Figure 1.
(c) Find the total potential at P in Figure 2. (k = 9×10° N×m²/C², and u= 10-)
30 µC, q,- -20 µC, and q,
10 µC are located in Figure 1. A rod with length
y
λ- 50 μCm
9 = 30 µC
d30 μ
L3 2 m
0.3 m
0.3 m
0.5 m
q3 = 10 µC
0.2 m --
0.2 m
0.2 m
0.2 m
0.3 m
0.3 m
0.5 m
-1
2= -20 uC
2=-20 uC
Figure 2
q= 100 µC
Figure 1
15 19
20.04.2021
ASUS
delete
12 IA
prt sc
19 A
f10 A
团
17
13)
esc
12
%3D
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&
7
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3
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$4
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Transcribed Image Text:7 Q S Sayfa görünumü A Sesli oku E Vurgula 3) Point charges q, L= 2 m has a total charge q-100 µC and a uniform linear charge density 2 = 50 µC/m in Figure 2. (a) Find the potential at Pin Figure 1. (b) Find the total potential energy of charge system in Figure 1. (c) Find the total potential at P in Figure 2. (k = 9×10° N×m²/C², and u= 10-) 30 µC, q,- -20 µC, and q, 10 µC are located in Figure 1. A rod with length y λ- 50 μCm 9 = 30 µC d30 μ L3 2 m 0.3 m 0.3 m 0.5 m q3 = 10 µC 0.2 m -- 0.2 m 0.2 m 0.2 m 0.3 m 0.3 m 0.5 m -1 2= -20 uC 2=-20 uC Figure 2 q= 100 µC Figure 1 15 19 20.04.2021 ASUS delete 12 IA prt sc 19 A f10 A 团 17 13) esc 12 %3D %, & 7 8 3 # 4 $4 /2 £ 5.
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