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Given data, the speed of both the waves is equal ⇒ v 1 = v 2 = v, where v is the velocity of a sound wave. Frequency of the first wave (f 1) = 45 khz = 45 × 10 3 hz. What happens when the frequency of a wave is changed? Does change in frequency affect energy?
As the frequency of a wave increases, the wavelength also increases. As the frequency of a wave decreases, the energy increases as the wavelength of a wave increases, the energy also increases. As the wavelength of a wave decreases, the frequency increases 1. The wavelength and frequency are inversely proportional. so when frequency increases the wavelength decreases. second statement is true. The relationship between the frequency and wavelength of a wave can best define by the equation: Divide the equation by f, we get: From the equation, the. Using another normalization for the same frequency dispersion relation, the figure on the right shows that for a fixed wavelength λ the phase speed c p increases with increasing water depth. Until, in deep water with water depth h larger than half the wavelength λ (so for h/λ > 0. 5 ), the phase velocity c p is independent of the water depth:
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