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The wavelength of ultraviolet waves typically ranges from about 10 nanometers to 400 nanometers, corresponding to frequencies between 7.5 × 10^14 Hz and 3 × 10^16 Hz. These wavelengths are shorter than those of visible light, making them invisible to the human eye but useful for applications like sterilization and fluorescence.

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1y ago

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What kind of wave is an ultra violet ray?

An ultra violet (UV) ray is an electromagnetic wave, it is the same kind as visible light wave just with a different wavelength and frequency. Both travel and the speed of light. It is a transverse wave


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voilet


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Ultra Wave was created in 1980-10.


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A radio wave has a greater wavelength compared to a visible light wave.


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The distance between a wavelength and a wave is dependent on the speed of the wave and the frequency of the wave. This relationship is described by the equation: wavelength = speed of the wave / frequency.


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you find out a waves speed by taking the wavelength and divide it by it's wave period or how long it takes for the wave to complete a full wavelength. This is what my textbook said. Speed=Wavelength ×Frequency


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Wave speed is dependent on both wavelength and period. The relationship is described by the formula: wave speed = wavelength / period. As wavelength increases, wave speed also increases. Conversely, as period increases, wave speed decreases.


Energy is inversely proportional to the wavelength of a wave. Which would have the GREATEST energy A wave with a wavelength of meters?

A wave with a wavelength of 10^-15 meters would have the greatest energy. This is because the energy of a wave is inversely proportional to its wavelength, meaning that as the wavelength decreases, the energy of the wave increases.


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The student can decrease the wavelength of the wave by increasing the frequency of the wave. This is because wavelength and frequency are inversely proportional in a wave - increasing frequency decreases wavelength and vice versa. Therefore, to decrease the wavelength, the student should focus on increasing the frequency of the wave.


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