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Zorluk: OrtaElectromagnetic Waves and Electromagnetic Spectrum

A satellite communication system transmits an ultra-high frequency electromagnetic wave with a wavelength of 0.05 m0.05\text{ m}. If the wave travels at a speed of 3.0×108 m/s3.0 \times 10^{8}\text{ m/s} in a vacuum, what is the frequency of the transmission in gigahertz (GHz\text{GHz})?

Cevap: 6 GHz

Cevap

The frequency of the electromagnetic transmission is 6 GHz6\text{ GHz}.
Using the wave equation c=fλc = f \lambda, the frequency is f=cλ=3.0×108 m/s0.05 m=6.0×109 Hzf = \frac{c}{\lambda} = \frac{3.0 \times 10^8\text{ m/s}}{0.05\text{ m}} = 6.0 \times 10^9\text{ Hz}. Converting to gigahertz (1 GHz=109 Hz1\text{ GHz} = 10^9\text{ Hz}) yields 6 GHz6\text{ GHz}.

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1
Identify the relationship between electromagnetic wave velocity, frequency, and wavelength.
c=fλc = f \lambda, where c=3.0×108 m/sc = 3.0 \times 10^8\text{ m/s} and λ=0.05 m\lambda = 0.05\text{ m}.
All electromagnetic waves travel at the speed of light cc in a vacuum.
2
Rearrange the wave equation to isolate frequency (ff).
f=cλ=3.0×108 m/s0.05 m=6.0×109 Hzf = \frac{c}{\lambda} = \frac{3.0 \times 10^8\text{ m/s}}{0.05\text{ m}} = 6.0 \times 10^9\text{ Hz}.
Dividing the wave speed by the wavelength yields the frequency in hertz.
3
Convert the frequency into gigahertz (GHz\text{GHz}).
6.0×109 Hz109 Hz/GHz=6 GHz\frac{6.0 \times 10^9\text{ Hz}}{10^9\text{ Hz/GHz}} = 6\text{ GHz}.
The prefix giga (G) denotes a factor of 10910^9.

Anahtar Kavram

Electromagnetic wave propagation equation (c=fλc = f \lambda) and unit conversion
Tahmini Süre:1m 15s
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