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Question
Determine the wavelengths and frequencies for photons with energies
- \[10^{-12}\mathrm{J}\],
- \[10^{-15}\mathrm{J}\],
- \[10^{-18}\mathrm{J}\],
- \[10^{-21}\mathrm{J}\] and
- \[10^{-24}\mathrm{J}\].
Arrange the electromagnetic-spectrum regions along a horizontal line.
Activity
Very Long Answer
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Solution
Use \[\nu = \frac{E}{h}\] and \[\lambda = \frac{c}{\nu} = \frac{hc}{E}\], with \[h = 6.626 \times 10^{-34},\mathrm{J,s}\] and \[c = 3.00 \times 10^{8},\mathrm{m,s^{-1}}].
| Photon energy | Frequency | Wavelength | Approximate region |
|---|---|---|---|
| \[10^{-12}\mathrm{J}\] | \[1.51 \times 10^{21}\mathrm{Hz}\] |
\[1.99 \times 10^{-13}\mathrm{m}\] |
Gamma rays |
| \[10^{-15}\mathrm{J}\] | \[1.51 \times 10^{18}\mathrm{Hz}\] | \[1.99 \times 10^{-10}\mathrm{m}\] | X-rays |
| \[10^{-18}\mathrm{J}\] | \[1.51 \times 10^{15}\mathrm{Hz}\] | \[1.99 \times 10^{-7}\mathrm{m}\] | Ultraviolet |
| \[10^{-21}\mathrm{J}\] | \[1.51 \times 10^{12}\mathrm{Hz}\] | \[1.99 \times 10^{-4}\mathrm{m}\] | Infrared/submillimetre |
| \[10^{-24}\mathrm{J}\] | \[1.51 \times 10^{9}\mathrm{Hz}\] |
\[1.99 \times 10^{-1}\mathrm{m}\] |
Radio-frequency region (microwave band) |
Spectrum arranged from shorter to longer wavelength:
Gamma rays → X-rays → Ultraviolet → Visible light → Infrared → Microwaves → Radio waves
Moving left to right, wavelength increases while frequency and photon energy decrease. The precise boundaries between spectrum regions are approximate.
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