A recent study found that electrons that have energies between 3.15 eV and 20.9 eV can cause breaks in a DNA molecule even though they do not ionize the molecule. If a single photon were to transfer its energy to a single electron, what range of light wavelengths could cause DNA breaks? minimum wavelength: maximum wavelength: nm nm In which part of the electromagnetic spectrum does this light lie? ultraviolet radio infrared gamma ray O O O O
A recent study found that electrons that have energies between 3.15 eV and 20.9 eV can cause breaks in a DNA molecule even though they do not ionize the molecule. If a single photon were to transfer its energy to a single electron, what range of light wavelengths could cause DNA breaks? minimum wavelength: maximum wavelength: nm nm In which part of the electromagnetic spectrum does this light lie? ultraviolet radio infrared gamma ray O O O O
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![A recent study found that electrons that have energies between 3.15 eV and 20.9 eV can cause breaks in a DNA molecule even
though they do not ionize the molecule. If a single photon were to transfer its energy to a single electron, what range of light
wavelengths could cause DNA breaks?
minimum wavelength:
maximum wavelength:
nm
nm
In which part of the electromagnetic spectrum does this light lie?
ultraviolet
radio
infrared
gamma ray](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1829f362-1a16-45e8-8282-990908270dc7%2F0df9004e-2388-4c28-8cdf-f0e4b720a912%2Fmsy0d0d_processed.png&w=3840&q=75)
Transcribed Image Text:A recent study found that electrons that have energies between 3.15 eV and 20.9 eV can cause breaks in a DNA molecule even
though they do not ionize the molecule. If a single photon were to transfer its energy to a single electron, what range of light
wavelengths could cause DNA breaks?
minimum wavelength:
maximum wavelength:
nm
nm
In which part of the electromagnetic spectrum does this light lie?
ultraviolet
radio
infrared
gamma ray
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