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Shown in the figure is the transmittance curve of a filter A. Transmittance (% 400 500 600 700 Wavelength (nm) (a) If you shine a

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Shown in the figure is the transmittance curve of a filter A. Transmittance (% 400 500 600 700 Wavelength (nm) (a) If you shine a wide-spectrum white light through this filter, what would be its color? (b) Draw the transmittance curve for a filter B which transmits light with a hue complementary to that of A. Use the grid to make the sketch as precise as you can. 100 Transmittance (%) 50 400 500 600 700 Wavelength (nm) c) Suppose now that you separately shine wide-spectrum white lights through each of these filters, and then project the filtered lights onto the same sheet of white paper. What color would the paper appear to be? Explain your reasoning. (d) You could also place filters A and B back to back to produce effect of a single filter. Draw the transmittance curve for this combination of filters. Use the grid to make the sketch as precise as you can

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