Related Formula
φ = E · A$$\phi = \vec{E} \cdot \vec{A}$$ [cite: 827]
Core Logic
A surface aligned parallel to the x-z$x\text{-}z$ plane possesses an area vector pointing completely orthogonal to it along the y$y$-axis direction, meaning A = A j$\vec{A} = A\hat{j}$[cite: 196, 827]. Performing the dot product: [cite: 827]
φ = [(2 i + 4 j + 6 k) × 10³] · (A j) = 4 × 10³ A$$\phi = \left[(2\hat{i} + 4\hat{j} + 6\hat{k}) \times 10^3\right] \cdot (A\hat{j}) = 4 \times 10^3 A$$ [cite: 195, 827]
Given that the net flux magnitude is 6.0 Nm²C⁻¹$6.0\ \text{Nm}^2\text{C}^{-1}$ [cite: 196]:
6 = 4 × 10³ A A = (6)/(4 × 10³) = 1.5 × 10⁻³ m²$$6 = 4 \times 10^3 A \implies A = \frac{6}{4 \times 10^3} = 1.5 \times 10^{-3}\ \text{m}^2$$ [cite: 828, 829]
Converting square meters to square centimeters (1 m² = 10⁴ cm²$1\ \text{m}^2 = 10^4\ \text{cm}^2$): [cite: 196, 830]
A = 1.5 × 10⁻³ × 10⁴ = 15 cm²$$A = 1.5 \times 10^{-3} \times 10^4 = 15\ \text{cm}^2$$ [cite: 830]
Pattern Recognition
Always focus exclusively on the specific field component matched to the surface orientation normal[cite: 827]. For an x-z$x\text{-}z$ plane match, only the j$\hat{j}$ coefficient creates flux[cite: 196, 827]. Do not miss the metric scale unit transition at the end (m² arrow cm²$m^2 \rightarrow cm^2$)[cite: 196, 830].
Chapter Mix
Class 12 Physics: Electrostatics