Coulomb's law for the magnitude of the force FFF between two particles with charges  QQQ and  Q′Q′Q^\prime separated by a distance ddd is |F|=K|QQ′|d2|F|=K|QQ′|d2, where K=14πϵ0K=14πϵ0, and ϵ0=8.854×10−12C2/(N⋅m2)ϵ0=8.854×10−12C2/(N⋅m2) is the permittivity of free space. Consider two point charges located on the x axis: one charge, q1q1q_1 = -19.0 nCnC , is located at x1x1x_1 = -1.710 mm ; the second charge, q2q2q_2 = 39.0 nCnC , is at the origin (xx = 0). What is (Fnet3)x , the x-component of the net force exerted by these two charges on a third charge q3 = 46.5 nC placed between q1 and q2 at x3 = -1.245 m ? Your answer may be positive or negative, depending on the direction of the force. Express your answer numerically in newtons to three significant figures.

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Chapter1: Units, Trigonometry. And Vectors
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Coulomb's law for the magnitude of the force FFF between two particles with charges  QQQ and  Q′Q′Q^\prime separated by a distance ddd is |F|=K|QQ′|d2|F|=K|QQ′|d2, where K=14πϵ0K=14πϵ0, and ϵ0=8.854×10−12C2/(N⋅m2)ϵ0=8.854×10−12C2/(N⋅m2) is the permittivity of free space. Consider two point charges located on the x axis: one charge, q1q1q_1 = -19.0 nCnC , is located at x1x1x_1 = -1.710 mm ; the second charge, q2q2q_2 = 39.0 nCnC , is at the origin (xx = 0). What is (Fnet3)x , the x-component of the net force exerted by these two charges on a third charge q3 = 46.5 nC placed between q1 and q2 at x3 = -1.245 m ? Your answer may be positive or negative, depending on the direction of the force. Express your answer numerically in newtons to three significant figures.
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