Calculating the Length of Received Radio Waves

2024-12-23 18:44:31
The length of the received radio waves can be calculated using the formula λ = c/f, where c is the speed of light (3 x 10^8 m/s) and f is the frequency of the radio waves. To find the frequency, we can use the equation f = 1/(2π√(LC)), where L is the inductance and C is the capacitance. In this case, the frequency will be equal to 2π x 10^7 Hz. Plugging this into our first equation, we get a wavelength of approximately 15 meters. This means that the radio waves being received by the radio receiver have a length of approximately 15 meters. It's important to note that this calculation assumes ideal conditions and may vary in real-life scenarios.

Fun fact: The average length of a blue whale is around 25 meters, so the length of these radio waves is roughly two blue whales stacked on top of each other!
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Calculating the Length of Received Radio Waves

2024-12-23 18:44:26
The length of the received radio waves is approximately 3934740 meters. This can be calculated using the formula λ = v/f, where λ is the wavelength, v is the speed of light (which is approximately 3x10^8 m/s), and f is the frequency. In this case, we need to find the frequency of the received radio waves, which can be calculated using the formula f = 1/2π√(L*C), where L is the inductance, and C is the capacitance. Plugging in the given values, we get a frequency of approximately 1.139x10^8 Hz. Finally, plugging this frequency into the formula for wavelength, we get the length of the received radio waves.
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