Shining a blue light through a cyan filter will result in a blue light shining through. As cyan is a combination of blue and green light, it will allow blue and green light to pass through it. Red light will be absorbed by the filter.
This is proven by shining a violet or magenta light through the filter and it allowing blue light will shine through. It is shown as well by shining a yellow light through the filter which will result in green light shining through as both violet and yellow are a combination of red the other two primary colours, blue and green.
It depends on what kind of filter, e.g. a blue filter absorbs everything except blue light, so only blue light comes out, which is why the filter looks blue, and is referred to as a "blue filter".
A blue object would appear darker when viewed through a green filter because the green filter would absorb some of the blue light that the object reflects, resulting in a more subdued color.
Objects appear to change through a color filter because the filter only allows certain wavelengths of light to pass through while absorbing or blocking others. This selective transmission of light alters the color composition that reaches our eyes, leading to a change in the appearance of the object based on the colors that are filtered out or transmitted.
The blue shirt would appear darker and more saturated when viewed through a blue filter. This is because the filter would allow blue light to pass through while blocking other colors, enhancing the blue color of the shirt.
If light reflected from a white shirt passed through a red filter and then a green filter, the shirt would appear black. This is because red and green filters would absorb most of the colors from the white light, leaving very little to pass through. White light contains all colors of the spectrum, so when most of it is absorbed by the filters, the resulting color appears black.
green
It depends on what kind of filter, e.g. a blue filter absorbs everything except blue light, so only blue light comes out, which is why the filter looks blue, and is referred to as a "blue filter".
red apples
A blue object would appear darker when viewed through a green filter because the green filter would absorb some of the blue light that the object reflects, resulting in a more subdued color.
Purple will the object be
Objects appear to change through a color filter because the filter only allows certain wavelengths of light to pass through while absorbing or blocking others. This selective transmission of light alters the color composition that reaches our eyes, leading to a change in the appearance of the object based on the colors that are filtered out or transmitted.
The blue shirt would appear darker and more saturated when viewed through a blue filter. This is because the filter would allow blue light to pass through while blocking other colors, enhancing the blue color of the shirt.
If light reflected from a white shirt passed through a red filter and then a green filter, the shirt would appear black. This is because red and green filters would absorb most of the colors from the white light, leaving very little to pass through. White light contains all colors of the spectrum, so when most of it is absorbed by the filters, the resulting color appears black.
When white light passes through a blue filter, the filter absorbs most of the colors in the white light spectrum and only allows blue light to pass through. As a result, the white light will appear blue after passing through the filter.
When looking at an orange object through a red filter, the object will appear darker and its hue will be altered to a more deep red or brownish color, as the filter absorbs most of the orange wavelengths of light that the object reflects.
A green object viewed through a blue filter would appear darker or black because the blue filter would absorb most of the green light, allowing very little to pass through. This lack of green light reaching our eyes makes the object appear darker and alters its color.
Black, or nearly so. The apple reflects only green light, the red filter only lets red light through, so nothing reaches the eye.