What equation is used to relate wavelength and frequency through the speed of light? \[ f=c \lambda \] \( E=h f \) \( K E=1 / 2 m v^{2} \) \( c=\lambda f \)
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The equation that relates wavelength (\(\lambda\)), frequency (\(f\)), and the speed of light (\(c\)) is given by \(c = \lambda f\). This means that the speed of light is equal to the frequency multiplied by the wavelength. When the frequency increases, the wavelength decreases, and vice versa, illustrating the wave nature of light. In practical terms, this relationship helps explain how different types of electromagnetic radiation fit into the spectrum. For example, radio waves have long wavelengths and low frequencies, whereas gamma rays have short wavelengths and high frequencies. Understanding this relationship is crucial in fields like telecommunications and astronomy, where manipulating these properties can lead to exciting advancements!