The colors in soap bubbles are caused by interference patterns that are created when white light reflects off the thin film of soap. Different colors are produced depending on the thickness of the film, resulting in iridescent patterns.
White Light is made of all the colours of the spectrum (rainbow). If we look at something, say, green (like grass) it looks green to us because the chlorophyll in the leaves absorbs all the sunlight that lands on it with the exception of green light which it reflects. Therefore this green light that reflects into our eyes makes us see the grass as green. White objects, however, absorb no light and reflect all the colours back to us. As all the colours together make white light, we see the object (in your case, a T shirt) as white.
All colors of visible light are being reflected by a white shirt when viewed in white light. White is the combination of all colors in the visible spectrum, so when white light hits the shirt, all colors are reflected back to your eyes, giving it the appearance of being white.
It's called iridescence, which is an optical phenomenon which occurs when the hue of a multi-layered and semi-transparent object such as soap bubbles appears to change due to the phase shifting of light within the soap bubbles as the angle from which the bubbles is viewed changes.
Each piece of clothing usually reflect only a few colours. Pure white light contains all of the colours, so an item of clothing can reflect all of the few colours it is capable of reflecting. If an item of clothing is viewed in magenta light (which is mainly blue and red) then that clothing may show that it is only able to reflect some shades of red and/or some shades of blue.
Breaking waves appear white because air bubbles within the water reflect sunlight, creating a frothy appearance. The turbulence and churning action of the waves also contribute to the scattering of light, making them appear white when viewed from a distance.
Beacause of the light reflecting of the detergent
because dark colours absorb light and light colours reflect light
They are rainbow colours bubbles but on a scale of 1 - 10 6 % most bubbles can be clear.
yes because light colours can be seen on dark colours
White Light is made of all the colours of the spectrum (rainbow). If we look at something, say, green (like grass) it looks green to us because the chlorophyll in the leaves absorbs all the sunlight that lands on it with the exception of green light which it reflects. Therefore this green light that reflects into our eyes makes us see the grass as green. White objects, however, absorb no light and reflect all the colours back to us. As all the colours together make white light, we see the object (in your case, a T shirt) as white.
If light is moved further away from bubbles, there would be more bubbles. This is because light helps to facilitate the photosynthesis process in algae, which produces oxygen as a byproduct. More light means more oxygen produced by the algae, leading to an increase in the number of bubbles formed.
because to help with the light bills and food bills.
objects in space that can only be viewed from earth because of reflected light energy are said to be luminous.
Colours appear the way they are because of light. Objects such as this bus reflect colours from light..thats why most things apear black in the dark because there is little or no light to reflect off of. Yellow objects reflect yellow while absorbing remaining colours
the material glass allows light to pass through it. when it passes through it changes the light into the colours of the rainbow. the colours come because the glass splits the light.
All colors of visible light are being reflected by a white shirt when viewed in white light. White is the combination of all colors in the visible spectrum, so when white light hits the shirt, all colors are reflected back to your eyes, giving it the appearance of being white.
Because white light, when shone through a prism, will divide into all the colours. And all the colours, mixed together, will combine into white light.