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No, the wavelength determines the color of the light. 700nm corresponds to red, 400nm to about purple, and in between are the rest of the visible colours.

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What are two things that determine the color of a light wave?

The wavelength of the light wave determines its color, with longer wavelengths appearing red and shorter wavelengths appearing violet. Additionally, the frequency of the light wave also plays a role, where higher frequencies correspond to bluer hues and lower frequencies to redder hues.


Which property of a light wave determines the color?

The frequency of the light wave determines its color. Higher frequencies correspond to shorter wavelengths and bluer colors, while lower frequencies correspond to longer wavelengths and redder colors.


In a wave of light why are frequency and wavelegnth important?

Frequency and wavelength in a light wave are important because they determine the energy and properties of the light. The frequency determines the color of the light, with higher frequencies corresponding to bluer colors and lower frequencies to redder colors. The wavelength affects how the light interacts with different materials and influences properties like diffraction and interference.


What do you observe with the wave length and frequency of the different color?

Different colors have different wavelengths and frequencies in the visible spectrum. As you move from red to violet, the wavelengths decrease and the frequencies increase. Red light has longer wavelengths and lower frequencies, while violet light has shorter wavelengths and higher frequencies. This relationship is described by the electromagnetic spectrum.


What does the frequency of a light wave tell you?

The frequency of a light wave tells you how many wave cycles pass a given point in one second. It determines the color of the light: higher frequencies correspond to colors like blue and violet, while lower frequencies correspond to colors like red and orange.

Related Questions

What are two things that determine the color of a light wave?

The wavelength of the light wave determines its color, with longer wavelengths appearing red and shorter wavelengths appearing violet. Additionally, the frequency of the light wave also plays a role, where higher frequencies correspond to bluer hues and lower frequencies to redder hues.


Which property of a light wave determines the color?

The frequency of the light wave determines its color. Higher frequencies correspond to shorter wavelengths and bluer colors, while lower frequencies correspond to longer wavelengths and redder colors.


In a wave of light why are frequency and wavelegnth important?

Frequency and wavelength in a light wave are important because they determine the energy and properties of the light. The frequency determines the color of the light, with higher frequencies corresponding to bluer colors and lower frequencies to redder colors. The wavelength affects how the light interacts with different materials and influences properties like diffraction and interference.


What do you observe with the wave length and frequency of the different color?

Different colors have different wavelengths and frequencies in the visible spectrum. As you move from red to violet, the wavelengths decrease and the frequencies increase. Red light has longer wavelengths and lower frequencies, while violet light has shorter wavelengths and higher frequencies. This relationship is described by the electromagnetic spectrum.


What does the frequency of a light wave tell you?

The frequency of a light wave tells you how many wave cycles pass a given point in one second. It determines the color of the light: higher frequencies correspond to colors like blue and violet, while lower frequencies correspond to colors like red and orange.


What it means for a wave to have a frequency of hertz?

A wave with a frequency of 1 Hertz completes one cycle per second. Higher frequencies mean more cycles per second, while lower frequencies mean fewer cycles per second. Frequency helps determine the pitch of a sound wave or the color of light.


What are the effects of changing the frequency of a wave?

Changing the frequency of a wave alters its pitch or color. Higher frequencies result in higher pitches or bluer light, while lower frequencies create lower pitches or redder light. Additionally, changes in frequency affect the energy carried by the wave, with higher frequencies having more energy than lower frequencies.


What can be determined from frequency of a light wave?

the energy of the wave brah


What happens when an object absorbs some of light's frequencies and reflects other's?

The light wave could be absorbed by the object, in which case its energy is converted to heat. The light wave could be reflected by the object. And the light wave could be transmitted by the object. ...


The wavelength of a light wave can be used to measure?

The wavelength of a light wave can be used to measure the frequency of the wave, as well as its energy. Additionally, it is used to determine the color of the light based on the visible spectrum.


Can be from the frequency of a light wave?

Yes, the frequency of a light wave refers to the number of cycles of the wave that pass a specific point in a given amount of time. It is commonly measured in Hertz (Hz), with higher frequencies corresponding to shorter wavelengths and higher energy photons. The frequency of a light wave determines its color, with higher frequencies corresponding to shorter wavelengths and colors towards the violet end of the spectrum, while lower frequencies correspond to longer wavelengths and colors towards the red end of the spectrum.


What properties of a light wave determine its color?

Frequency or wave length.The relation between frequency f and wave length lof a light waveis given by; f = c/l, where c is light's speed.