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Additional Exercises · 10.20

Q.Answer the following questions:

(a) When a low flying aircraft passes overhead, we sometimes notice a slight shaking of the picture on our TV screen. Suggest a possible explanation.
(b) As you have learnt in the text, the principle of linear superposition of wave displacement is basic to understanding intensity distributions in diffraction and interference patterns. What is the justification of this principle?
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  1. The TV picture shakes because the receiver picks up both the direct broadcast signal and a signal reflected off the moving aircraft, and their changing path difference causes fluctuating interference.
  2. The principle of linear superposition is justified because the wave equation governing the field/displacement is a linear differential equation, so the sum of any two solutions is itself a solution.
  1. TV picture shaking under a low-flying aircraft The television transmitter's signal reaches the receiving antenna along the direct path, but a low-flying aircraft overhead also reflects some of the transmitted signal, which reaches the antenna along a second, reflected path. The receiver therefore picks up the superposition of two coherent (same-frequency) signals: the direct one and the aircraft-reflected one. As the aircraft moves, the length of the reflected path changes continuously, so the path difference (and hence the phase difference) between the two signals at the antenna keeps changing. This makes the resultant signal alternate between constructive and destructive interference, causing the received signal strength to fluctuate — which shows up as a shaking/flickering of the picture on the screen.
  2. Justification for the principle of linear superposition …

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