2.4 Sa K/s 3G 22 9:58 CH1. Review questions 0 class comments Q1. Find the core diameter for a SMF in the 2nd window if ncore=1.48 & ncladd=1.478 ? Q2. If an incoming ray into a fiber with ncore=1.485...


2.4<br>Sa K/s<br>3G<br>22 9:58<br>CH1. Review questions<br>0 class comments<br>Q1. Find the core diameter for a SMF in the 2nd<br>window if ncore=1.48 & ncladd=1.478 ?<br>Q2. If an incoming ray into a fiber with<br>ncore=1.485 & ncladd=1.47 has an incidence<br>angle of 28(degree) , what's the behaviour of the<br>propagation path along the fiber?<br>Q3. Derive an expression for the chromatic<br>dispersion in a SMF.<br>Q4. If (120 uW) is launched in an (8 km) length<br>fiber,when measuring the Po result was(3 uW) .<br>Calculate Po after (10 km) after adding splices at (1<br>km) intervals, each giving an attenuation of (1 dB)?<br>Your work<br>No due date<br>+ Add work<br>

Extracted text: 2.4 Sa K/s 3G 22 9:58 CH1. Review questions 0 class comments Q1. Find the core diameter for a SMF in the 2nd window if ncore=1.48 & ncladd=1.478 ? Q2. If an incoming ray into a fiber with ncore=1.485 & ncladd=1.47 has an incidence angle of 28(degree) , what's the behaviour of the propagation path along the fiber? Q3. Derive an expression for the chromatic dispersion in a SMF. Q4. If (120 uW) is launched in an (8 km) length fiber,when measuring the Po result was(3 uW) . Calculate Po after (10 km) after adding splices at (1 km) intervals, each giving an attenuation of (1 dB)? Your work No due date + Add work

Jun 10, 2022
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