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A transmission line is feeding 1 watt of power to a horn antenna having a gain of 10 dB. The antenna is matched to the transmission line. The total power radiated by the horn antenna into the free space is
  • a)
    10 watt
  • b)
    1 watt
  • c)
    0.1 watt
  • d)
    0.01 watt
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
A transmission line is feeding 1 watt of power to a horn antenna havin...
Pradiated = Gain of Antenna x Input power = G.I
10 log1010 . 1 10 watt.
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A transmission line is feeding 1 watt of power to a horn antenna havin...
Transmission Line and Antenna Gain

A transmission line is used to transfer electrical power from a source to a load, while an antenna is used to radiate electromagnetic waves into free space. The power transfer between the transmission line and the antenna is an important factor in the overall efficiency of the system.

The gain of an antenna is a measure of how well it converts electrical power into radiated power. It is usually expressed in decibels (dB) and can be positive or negative. A positive gain indicates that the antenna is more efficient at radiating power, while a negative gain indicates that the antenna is less efficient.

In this scenario, the transmission line is feeding 1 watt of power to a horn antenna with a gain of 10 dB. Let's calculate the total power radiated by the horn antenna into free space.

Calculating the Total Power Radiated

To calculate the total power radiated by the horn antenna, we need to consider the power gain of the antenna. The power gain is calculated using the formula:

Power Gain (in dB) = 10 log (Power Output / Power Input)

In this case, the power gain of the antenna is given as 10 dB. Therefore, we can write:

10 dB = 10 log (Power Output / 1 watt)

Simplifying the equation, we have:

1 = log (Power Output / 1 watt)

Since the logarithm is the inverse of the exponentiation, we can rewrite the equation as:

10^1 = Power Output / 1 watt

Therefore, the power output of the antenna is:

Power Output = 10 watts

Hence, the total power radiated by the horn antenna into free space is 10 watts.

Conclusion

In conclusion, when a transmission line is feeding 1 watt of power to a horn antenna with a gain of 10 dB, the total power radiated by the antenna into free space is 10 watts. The gain of the antenna allows for a more efficient conversion of electrical power into radiated power, resulting in a higher power output.
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A transmission line is feeding 1 watt of power to a horn antenna havin...
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A transmission line is feeding 1 watt of power to a horn antenna having a gain of 10 dB. The antenna is matched to the transmission line. The total power radiated by the horn antenna into the free space isa)10 wattb)1 wattc)0.1 wattd)0.01 wattCorrect answer is option 'A'. Can you explain this answer?
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