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Frequency = 6.00 x 10-14 Hz

Wavelength = (speed) /(frequency)

-- If this wave is sound in air, then the speed is 343 m/s and the wavelength is 5.72 x 1012 kilometers.

-- If this is an electromagnetic wave in vacuum, then the speed is 299,792,458 m/s

and the wavelength is 5 x 1018 kilometers.

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In vacuum a certain wave of light has a wavelength of 600 nanometers. What is the wave's frequency?

The answer is 5.0*1014 Hertz.


What is the wavelength of a wave with a speed of 345 ms and a frequency of 600 Hz?

Please use the relationship:Speed = frequency x wavelengthIn this case, you need to divide the speed by the frequency.


What is the frequency of a wave that has a wavelength 600nm?

The frequency of a wave can be calculated using the formula: frequency = speed of light / wavelength. Given the speed of light in a vacuum is approximately 3.00 x 10^8 m/s, converting the wavelength to meters (600nm = 600 x 10^-9 m) and plugging the values into the formula, the frequency of the wave with a 600nm wavelength is approximately 5 x 10^14 Hz.


What is the minimum wavelength in the visible light spectrum?

The minimum wavelength in the visible light spectrum is approximately 380 nanometers, which corresponds to the color violet.


What is the equation for wavelength?

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What is the sun's wavelength of maximum energy emission in what range?

The Sun's wavelength of maximum energy emission falls within the visible light spectrum, specifically in the range of around 500 to 600 nanometers. This corresponds to the green to yellow part of the spectrum.


What is the wavelength of the radio waves from a station broadcasting at 600 kilohertz?

To find the wavelength of radio waves, you can use the formula: wavelength (λ) = speed of light (c) / frequency (f). The speed of light is approximately 300,000,000 meters per second. For a station broadcasting at 600 kilohertz (600,000 hertz), the wavelength would be λ = 300,000,000 m/s / 600,000 Hz, which equals 500 meters. Thus, the wavelength of the radio waves is 500 meters.


What is the frequency of an atom who emits a photon of light having wavelength 615 nm.?

We, Know for any electromagnetic wave(or light) c=f*l where, c=speed of that wave(or light)=3*10^8 m/s f=frequency of the wave l=wavelength of the wave for the given case, l=600 nm=6*10^-7 m So, Frequence f=c/l=5*10^14 Hz


Frequency of a light with a wavelength of 580nm?

The color of the wavelength lambda = 686.2 nanometers is "deep red". The wavelength lambda = 685 nanometers equals the frequency f = 436,887,872,340,425 Hz. 1 nanometer = 1×10−9 meter. 686.2 nm = 0.0000006862 meters. Scroll down to related links and look at "Radio and light waves in a vacuum".


How fast does 500 Hz wave travel through wavelength 0.5m?

AnswerSpeed of a wave = Wavelength x frequencyv = 0.5 x 500v = 250 m/sAnswerIf it is an electromagnetic wave, then the speed is that of light - 'c (in vacuum)'.


Sound waves whose frequency is 300 Hz have a speed relative to sound waves in the same medium whose frequency is 600 Hz that is?

Since velocity of wave = frequency x wavelength (or v=fλ), and velocity is assumed to be the same for both since they're in the same medium,f1λ1 = f2λ2300λ1 = 9000λ2λ1/λ2 = 9000/300 = 30Thus, the wavelength of the 300Hz frequency sound wave is 30 times greater than the 9000Hz frequency sound wave.


Why was 550 to 600 used in the spectroscopy portion of this experiment?

The range of 550 to 600 nanometers is commonly used in spectroscopy because it corresponds to the visible light spectrum, allowing for detection and analysis of colored compounds. This range is also suitable for studying certain types of chromophores that absorb light in this wavelength range.

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