Consider the following figure. (If you need to use es or -, enter INFINITY or -INFINITY, respectively.) (4) (b) + 5 5 -q -20 +39 10 10 +4 x (cm) x (cm) (a) Find the total electric field in N/C at x 1.00 cm in part (b) of the figure above given that q-1.00 pc. N/C (b) Find the total electric field in N/C at x 12.70 cm in part (b) of the figure above. (Include the sign of the value in your answer.) N/C (c) If the charges are allowed to move and eventually be brought to rest by friction, what will the final charge configuration be? (That is, will there be a single charge, value(s) be? Use the following as necessary: q)

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Chapter1: Units, Trigonometry. And Vectors
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Consider the following figure. (If you need to use so or-, enter INFINITY or -INFINITY, respectively.)
(a)
(6)
0
0
-20
+9
5
5
-q
-29
+3q
10
10
+9
x (cm)
x (cm)
-9
(a) Find the total electric field in N/C at x 1.00 cm in part (b) of the figure above given that q=1.00 p
N/C
(b) Find the total electric field in N/C at x 12.70 cm in part (b) of the figure above. (Include the sign of the value in your answer.)
N/C
(c) If the charges are allowed to move and eventually be brought to rest by friction, what will the final charge configuration be? (That is, will there be a single charge, de
value(s) be? Use the following as necessary: q.)
Transcribed Image Text:Consider the following figure. (If you need to use so or-, enter INFINITY or -INFINITY, respectively.) (a) (6) 0 0 -20 +9 5 5 -q -29 +3q 10 10 +9 x (cm) x (cm) -9 (a) Find the total electric field in N/C at x 1.00 cm in part (b) of the figure above given that q=1.00 p N/C (b) Find the total electric field in N/C at x 12.70 cm in part (b) of the figure above. (Include the sign of the value in your answer.) N/C (c) If the charges are allowed to move and eventually be brought to rest by friction, what will the final charge configuration be? (That is, will there be a single charge, de value(s) be? Use the following as necessary: q.)
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