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Worked Examples · Example 1.8

Q.Two point charges q1q_1 and q2q_2, of magnitude +10−8 C+10^{-8}\,\text{C} and −10−8 C-10^{-8}\,\text{C}, respectively, are placed 0.1 m0.1\,\text{m} apart. Calculate the electric fields at points A, B and C shown in Fig. 1.11.

Figure 1.11
Figure 1.11
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By superposition, EA=7.2×104 N/CE_A=7.2\times10^{4}\,\text{N/C} (from q1q_1 to q2q_2), EB=3.2×104 N/CE_B=3.2\times10^{4}\,\text{N/C} (directed away from q1q_1), and at C the vertical components cancel to give EC=9.0×103 N/CE_C=9.0\times10^{3}\,\text{N/C} parallel to the axis.

Each charge produces E=k∣q∣r2E=\dfrac{k|q|}{r^2}; the net field is the vector sum. A positive charge's field points away from it, a negative charge's field points toward it. Take q1=+10−8 Cq_1=+10^{-8}\,\text{C} on the left, q2=−10−8 Cq_2=-10^{-8}\,\text{C} on the right, separated by 0.1 m0.1\,\text{m}, with k=9×109 N⋅m2/C2k=9\times10^{9}\,\text{N·m}^2/\text{C}^2 so that k∣q∣=90 N⋅m2/Ck|q|=90\,\text{N·m}^2/\text{C}.

Point A — midpoint. r=0.05 mr=0.05\,\text{m} from each:

E1=E2=90(0.05)2=3.6×104 N/C.E_1=E_2=\frac{90}{(0.05)^2}=3.6\times10^{4}\,\text{N/C}.

E1E_1 points away from q1q_1 (to the right); E2E_2 points toward q2q_2 (also to the right). Same direction, so they add:

EA=3.6×104+3.6×104=7.2×104 N/C,E_A=3.6\times10^{4}+3.6\times10^{4}=7.2\times10^{4}\,\text{N/C},

directed from q1q_1 toward q2q_2.

Point B — 0.05 m0.05\,\text{m} to the left of q1q_1. Then r1=0.05 mr_1=0.05\,\text{m} and r2=0.15 mr_2=0.15\,\text{m}:

E1=90(0.05)2=3.6×104 N/C (away from q1, leftward),E_1=\frac{90}{(0.05)^2}=3.6\times10^{4}\,\text{N/C (away from }q_1,\text{ leftward)},

E2=90(0.15)2=4.0×103 N/C (toward q2, rightward).E_2=\frac{90}{(0.15)^2}=4.0\times10^{3}\,\text{N/C (toward }q_2,\text{ rightward)}.

These are opposite, so they subtract:

EB=3.6×104−0.4×104=3.2×104 N/C,E_B=3.6\times10^{4}-0.4\times10^{4}=3.2\times10^{4}\,\text{N/C},

directed leftward, i.e. away from q1q_1.

Watch out

At B the two fields oppose each other — the closer positive charge wins. Do not add their magnitudes. …

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