Two charges are located in the x–y plane. If q1=−2.45 nC and is located at (x=0.00 m,y=1.000 m), and the second charge has a magnitude of q2=4.60 nC and is located at (x=1.10 m,y=0.550 m), calculate the x and y components, Ex and Ey, of the electric field, E→, in component form at the origin, (0,0). The Coulomb force constant is 1/(4πϵ0)=8.99×109 N⋅m2/C2.
Two charges are located in the x–y plane. If q1=−2.45 nC and is located at (x=0.00 m,y=1.000 m), and the second charge has a magnitude of q2=4.60 nC and is located at (x=1.10 m,y=0.550 m), calculate the x and y components, Ex and Ey, of the electric field, E→, in component form at the origin, (0,0). The Coulomb force constant is 1/(4πϵ0)=8.99×109 N⋅m2/C2.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter1: Getting Started
Section: Chapter Questions
Problem 29PQ
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Two charges are located in the x–y plane. If q1=−2.45 nC and is located at (x=0.00 m,y=1.000 m), and the second charge has a magnitude of q2=4.60 nC and is located at (x=1.10 m,y=0.550 m), calculate the x and y components, Ex and Ey, of the electric field, E→, in component form at the origin, (0,0). The Coulomb force constant is 1/(4πϵ0)=8.99×109 N⋅m2/C2.
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