The paper appears dark because red light is absorbed by the blue pigment, not reflected. The blue pigment absorbs red light and reflects blue light, which is why the paper appears blue under white light.
When a green light is shone onto cyan paper, the paper will absorb some of the green light and reflect the rest. Since cyan is a combination of green and blue, the green light will combine with the reflected blue light from the paper, making it appear brighter and more vibrant.
The mug reflects, absorbs, and transmits light. The material and color of the mug will determine how it interacts with the light - for example, a white mug will reflect more light compared to a black mug which will absorb more light.
BlackAll of the colours that make the white light shine down on the black object and all of the colours that make the white light the light absorbs into the object and no light reflects.WhiteAll of the colours that make the white light shine down on the white object and the light and no light is absorbed into the object but all of the colours that make the white light are reflected into your eyes
When you mix red and blue, you get magenta. When you shine a green light on magenta, the green light will be absorbed by the magenta, resulting in a dark color or black, depending on the intensity of the green light.
The energy is absorbed by the paper. Technically, it heats the paper. But it would have to be quite a bright light before you'd notice the increase in temperature.
Light can shine through wax paper, as it is semi-translucent. However, construction paper is usually opaque and does not allow light to pass through.
The paper appears dark because red light is absorbed by the blue pigment, not reflected. The blue pigment absorbs red light and reflects blue light, which is why the paper appears blue under white light.
When a green light is shone onto cyan paper, the paper will absorb some of the green light and reflect the rest. Since cyan is a combination of green and blue, the green light will combine with the reflected blue light from the paper, making it appear brighter and more vibrant.
To make green appear black, shine red light on it. Green absorbs red light, so when red light is shone on green, the green will appear black.
Sure. Shine a flashlight on a piece of black satin or black construction paper, and watch the intensity of the blinding glare that's reflected back.
no
it reflects
The mug reflects, absorbs, and transmits light. The material and color of the mug will determine how it interacts with the light - for example, a white mug will reflect more light compared to a black mug which will absorb more light.
it runs away?
It is reflected
The blue paper will absorb some of the red light and reflect the rest, appearing a shade of purple where the two colors overlap. Since red and blue are complementary colors, the paper may also appear to have a grayish tint where the colors mix.