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#straight line travel

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What ensures that light rays appear to travel in straight lines despite their wave nature?

**Intensity not depend on speed** when enters denser medium because intensity I ∝ n E₀²? Actually Poynting vector S = E×H, energy density u =½ ε E², for same amplitude E₀ intensity proportional to n, but amplitude changes at interface due to reflection, total energy conserved incident = reflected + transmitted, interference does not destroy energy, it redistributes. The extremely small wavelength of light compared to everyday objects minimizes wave effects, making rectilinear propagation dominant in macroscopic observations. Using Δ = d sinθ, y = n λ D/d, a sinθ = n λ, I = I₀ cos²θ, n = c/v, s

Ref: NCERT > Physics Book > Wave Optics > Wave Properties, Frequency and Energy Conservation