Given two particles with Q = 3.80-μC charges as shown in the figure below and a particle with charge q = 1.26 x 10-18 C at the origin. (Note: Assume a reference level of potential V = 0 at r = 00. x=-0.800 m y 0 9 Q x=0.800 m x Ⓡ (a) What is the net force (in N) exerted by the two 3.80-μC charges on the charge q? (Enter the magnitude.) N (b) What is the electric field (in N/C) at the origin due to the two 3.80-µC particles? (Enter the magnitude.) N/C (c) What is the electrical potential (in kV) at the origin due to the two 3.80-μC particles? kV

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Chapter1: Units, Trigonometry. And Vectors
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Given two particles with Q = 3.80-μC charges as shown in the figure below and a particle with charge q = 1.26 × 10-18 C at the origin. (Note: Assume a reference level of potential V = 0 at r = ∞o.)
Q
x= -0.800 m
y
9
0
x = 0.800 m
x
i
(a) What is the net force (in N) exerted by the two 3.80-μC charges on the charge q? (Enter the magnitude.)
N
(b) What is the electric field (in N/C) at the origin due to the two 3.80-μC particles? (Enter the magnitude.)
N/C
(c) What is the electrical potential (in kV) at the origin due to the two 3.80-μC particles?
kV
(d) What If? What would be the change in electric potential energy (in J) of the system if the charge q were moved a distance d = 0.400 m closer to either of the 3.80-μC particles?
J
Transcribed Image Text:Given two particles with Q = 3.80-μC charges as shown in the figure below and a particle with charge q = 1.26 × 10-18 C at the origin. (Note: Assume a reference level of potential V = 0 at r = ∞o.) Q x= -0.800 m y 9 0 x = 0.800 m x i (a) What is the net force (in N) exerted by the two 3.80-μC charges on the charge q? (Enter the magnitude.) N (b) What is the electric field (in N/C) at the origin due to the two 3.80-μC particles? (Enter the magnitude.) N/C (c) What is the electrical potential (in kV) at the origin due to the two 3.80-μC particles? kV (d) What If? What would be the change in electric potential energy (in J) of the system if the charge q were moved a distance d = 0.400 m closer to either of the 3.80-μC particles? J
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