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An Electric Dipole Consists of Charges Of ±6.00μC\pm 6.00 \mu \mathrm { C }

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An electric dipole consists of charges of ±6.00μC\pm 6.00 \mu \mathrm { C } that are 10.0 cm10.0 \mathrm {~cm} apart, as shown in the figure. Find the magnitude and direction of the electric field this dipole produces at point P\mathrm { P } , which is 7.00 cm7.00 \mathrm {~cm} from each charge. (k=1/4πε0=8.99×109 Nm2/C2)\left( k = 1 / 4 \pi \varepsilon _ { 0 } = 8.99 \times 10 ^ { 9 } \mathrm {~N} \cdot \mathrm { m } ^ { 2 } / \mathrm { C } ^ { 2 } \right)
 An electric dipole consists of charges of  \pm 6.00 \mu \mathrm { C }  that are  10.0 \mathrm {~cm}  apart, as shown in the figure. Find the magnitude and direction of the electric field this dipole produces at point  \mathrm { P } , which is  7.00 \mathrm {~cm}  from each charge.  \left( k = 1 / 4 \pi \varepsilon _ { 0 } = 8.99 \times 10 ^ { 9 } \mathrm {~N} \cdot \mathrm { m } ^ { 2 } / \mathrm { C } ^ { 2 } \right)

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