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Different amounts of energy contained in different frequencies cause different colours to be perceived by us. It's all in the spectrum of visible light.

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Can light exceed its normal speed?

No, according to current scientific understanding, light travels at a constant speed in a vacuum, known as the speed of light, which is approximately 299,792 kilometers per second. This speed is a fundamental constant of nature and cannot be exceeded by light or any other object.


How do you see colour?

When the light reflects on an object into your eye you see the objects colour. When all of the light reflects into your eye you see the colour as white. So if some of the light is absorbed into the object you see it as it being a certain colour. There are cone cells in the eye that detect color (the other type of cells is rod cells, which are better at distinguishing light/darkness and patterns). Different colors of light excite different cone cells and cone cell clusters and these cells transmit signals to your brain, which interprets these signals as color vision.


All colors of visible light spectrum blended together results in what?

white light.... , The one that comes from the sun , light bulbs ... and that allows us to see.


How is light related to electricity and magnetism?

Light is an electromagnetic wave, consisting of oscillating electric and magnetic fields. This connection is described by Maxwell's equations in electromagnetism, which show how changes in electric fields can induce magnetic fields, and vice versa. This relationship is fundamental to understanding how light interacts with matter and how electricity and magnetism are interconnected phenomena.


Discovery of particle theory of light?

The particle theory of light, which suggests that light is made up of small particles called photons, was first proposed by Albert Einstein in 1905 to explain the photoelectric effect. This theory revolutionized our understanding of light and helped to explain phenomena that the wave theory of light could not account for. Today, the particle-wave duality of light is a fundamental concept in quantum mechanics.

Related Questions

How does the dual nature of light as both a wave and a particle impact our understanding of the fundamental properties of electromagnetic radiation?

The dual nature of light as both a wave and a particle challenges traditional ideas about the nature of electromagnetic radiation. This duality suggests that light can exhibit characteristics of both waves and particles, leading to a more complex understanding of its fundamental properties.


What is the light of philosophy?

The light of philosophy refers to the illumination and clarity that philosophical inquiry provides in understanding fundamental questions about existence, knowledge, ethics, and reality. It helps to shed light on complex issues, promote critical thinking, and deepen our understanding of the world and our place in it.


What was the effect of depriving the leaves of the plant of light and carbon dioxide?

Since both light and CO2 are fundamental components of photosynthesis, the 'food producing' process for a plant, this would starve the plant.


How does the concept of slowing down the speed of light impact our understanding of the universe?

Slowing down the speed of light can affect our understanding of the universe by changing how we perceive distances and time. This concept can lead to new insights into the nature of space, time, and the fundamental laws of physics.


What color light has no red or blue?

There are only 3 colours of light which are red, green and blue which, when combined in varying amounts can create any colour on the spectrum. Therefore, the only colour that has no red or blue is green.


What does a photon consist of?

A photon is a fundamental particle that doesn't consist of smaller components. It is a packet of energy that carries electromagnetic radiation and is considered as the most basic unit of light.


What is the significance of the Maxwell equation for light in the field of physics?

The Maxwell equations describe how light and other electromagnetic waves behave. They are fundamental in understanding the behavior of light and have had a profound impact on the field of physics, leading to advancements in technology such as telecommunications and electronics.


What two colors on Excel is better not to use?

You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.You never use colours that clash. You want to be able to see your data. So you either have a dark colour on a light background or a light colour on a dark background. You never do a light colour on a light background or a dark colour on a dark background, as it will be difficult to see you data properly.


What colour is a dormouse?

light brown colour


What colour is light?

Light is invisible


What colour do you get when you mix green and red?

You get white light, the basic light colour you see every day.


Can light exceed its normal speed?

No, according to current scientific understanding, light travels at a constant speed in a vacuum, known as the speed of light, which is approximately 299,792 kilometers per second. This speed is a fundamental constant of nature and cannot be exceeded by light or any other object.