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NEW QUESTION 36
In which window(s) does the attenuation reach its minimum peak?

A. First window (850 nm)B. Second window (1300 nm)C. Both first and second windowsD. Third window (1550 nm)

Answer: D

Explanation:
The third window (1550 nm) is where the attenuation reaches its minimum peak. This is because the materials used in fiber optic cables have minimal absorption in this wavelength range. The first and second windows (850 nm and 1300 nm respectively) have higher attenuation due to the materials used in the fiber optic cables.

 

NEW QUESTION 37
What is the definition of OSNR?

A. The OSNR is the ratio between the optical output signal power and the optical input signal power of the device being analyzed.B. The OSNR is defined as the ratio between the transmitted optical power and the received optical power over 1 km of fiber including both signal and optical noise.C. The OSNR is defined as the ratio between the average optical signal power and the average optical noise power over a specific spectral bandwidth.D. The OSNR is defined as the ratio between the optical signal power (including noise) and the optical noise power over a specific spectral bandwidth.

Answer: C

Explanation:
The OSNR is defined as the ratio between the average optical signal power and the average optical noise power over a specific spectral bandwidth. This is also known as the signal-to-noise ratio (SNR), and it is a measure of how much signal is present in the optical signal compared to the noise, usually expressed in decibels (dB).

 

NEW QUESTION 38
With reference to the image, where is the OPS card placed to provide the OMSP protection?

A. After the amplifiersB. Between the transponders and the mux/demuxC. Before the transponder, on the client side, towards the external deviceD. Between the mux/demux and the amplifier

Answer: C

 

NEW QUESTION 39
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