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5,000 km = roughly 3,107 miles

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What determines the frequency of an electromagnetic wave?

The frequency of an electromagnetic wave is determined by the speed of light divided by the wavelength of the wave. This relationship is defined by the equation: frequency = speed of light / wavelength.


In the electromagnetic spectrum is determined by its wavelength?

No, the position of a wave in the electromagnetic spectrum is determined by its wavelength and frequency. The electromagnetic spectrum ranges from radio waves with longer wavelengths to gamma rays with shorter wavelengths.


How are wavelength frequency intensity and energy related in an electromagnetic wave?

Wavelength and frequency are inversely related: as wavelength decreases, frequency increases. Intensity is proportional to the square of the amplitude of the electric and magnetic fields, which determines the brightness or loudness of the wave. Energy is directly proportional to frequency: higher frequency waves have higher energy.


What type of electromagnetic wave has the shortest wavelenght?

Gamma rays have the shortest wavelength compared to most of other electromagnetic radiation. Gamma rays have high penetrating power and are high in frequency. Exposure to this type of radiation can cause many health complications.


What is If an electromagnetic wave has a frequency of 7.57 times 10 to the power of 14 hertz What is its wacelength and to what part of the spectrum does this wave belong?

The wavelength of the electromagnetic wave can be calculated using the formula: wavelength = speed of light / frequency. The speed of light is approximately 3.00 x 10^8 m/s. Plugging in the values gives a wavelength of approximately 396 nm. This wavelength corresponds to the ultraviolet part of the spectrum.

Related Questions

What determines the frequency of an electromagnetic wave?

The frequency of an electromagnetic wave is determined by the speed of light divided by the wavelength of the wave. This relationship is defined by the equation: frequency = speed of light / wavelength.


In the electromagnetic spectrum is determined by its wavelength?

No, the position of a wave in the electromagnetic spectrum is determined by its wavelength and frequency. The electromagnetic spectrum ranges from radio waves with longer wavelengths to gamma rays with shorter wavelengths.


How are wavelength frequency intensity and energy in an electromagnetic wave?

You will need to have the right formula. The best one to use would be wavelength=frequency/speed of light. to find energy you would need energy=frequency*h. And intensity=power/area.


How are wavelength frequency intensity and energy related in electromagnetic wave?

You will need to have the right formula. The best one to use would be wavelength=frequency/speed of light. to find energy you would need energy=frequency*h. And intensity=power/area.


Electromagnetic waves with a longer wavelength has?

An electromagnetic wave with a longer wavelength will have a smaller frequency, and less energy per photon.An electromagnetic wave with a longer wavelength will have a smaller frequency, and less energy per photon.An electromagnetic wave with a longer wavelength will have a smaller frequency, and less energy per photon.An electromagnetic wave with a longer wavelength will have a smaller frequency, and less energy per photon.


How are wavelength frequency intensity and energy related in an electromagnetic wave?

Wavelength and frequency are inversely related: as wavelength decreases, frequency increases. Intensity is proportional to the square of the amplitude of the electric and magnetic fields, which determines the brightness or loudness of the wave. Energy is directly proportional to frequency: higher frequency waves have higher energy.


What is the wavelength of 1.010 to the fifteenth power?

That number has no units, and just-plain-numbers don't have wavelengths. If you mean that number to have the unit of "Hertz", and to be a frequency of, say, an electromagnetic wave in vacuum, then it's wavelength would be 296.8 nanometers ... an ultraviolet wave.


What type of electromagnetic wave has the shortest wavelenght?

Gamma rays have the shortest wavelength compared to most of other electromagnetic radiation. Gamma rays have high penetrating power and are high in frequency. Exposure to this type of radiation can cause many health complications.


What is If an electromagnetic wave has a frequency of 7.57 times 10 to the power of 14 hertz What is its wacelength and to what part of the spectrum does this wave belong?

The wavelength of the electromagnetic wave can be calculated using the formula: wavelength = speed of light / frequency. The speed of light is approximately 3.00 x 10^8 m/s. Plugging in the values gives a wavelength of approximately 396 nm. This wavelength corresponds to the ultraviolet part of the spectrum.


What is the wavelength of radiation that has a frequency of 2.5 times 10 to the 8th power?

For electromagnetic radiation, frequency x wavelength equals the speed of liqht, c, in a vacuum, which is 3.0 x 108 cm/s.Formula: c = frequency x wavelengthYour given information is the frequency of 2.5 x 108/s.Your known information is c, which is 3.0 x 108 m/s.To solve for wavelength, do the following:wavelength = c/frequency = (3.0 x 108 m/s)/(2.5 x 108/s) = 12 m


How would you classify an em wave with a wavelength of 10 to the negative 12 power?

An electromagnetic wave with a wavelength of 10^-12 meters falls within the gamma-ray region of the electromagnetic spectrum. Gamma rays have the shortest wavelength and highest frequency of all electromagnetic waves, making them highly energetic and able to penetrate deep into materials. They are commonly produced in nuclear reactions and high-energy astrophysical processes.


A sound wave that has a higher frequency has a wavelength that is shorter or longer?

A wave with a high frequency has a low wavelength. Wavelength lambda and frequency f are connected by the speed cof the medium. c can be air = 343 m/s at 20 degrees celsius or water at 0 dgrees = 1450 m/s. c can be light waves or electromagnetic waves = 299 792 458 m/s. The formulas are: c = lambda x f f = c / lambda lambda = c / f