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a)
Given scenario:
From the given scenario “Client A” initiates a Telnet session with Server “S” and also “Client B” initiates a Telnet session with Server “S”.
The port numbers for source and destination may vary and default port number for telnet is “23”.
- For the segments sent from “A” to “S” and “B” to “S”, the destination port number is to be same.
- For the segments sent from “S” to “A” and “S” to “B”, the source port number is to be same.
b)
Given scenario:
From the given scenario “Client A” initiates a Telnet session with Server “S” and also “Client B” initiates a Telnet session with Server “S”.
The port numbers for source and destination may vary and default port number for telnet is “23”.
- For the segments sent from “A” to “S” and “B” to “S”, the destination port number is to be same.
- For the segments sent from “S” to “A” and “S” to “B”, the source port number is to be same.
c)
Given scenario:
From the given scenario “Client A” initiates a Telnet session with Server “S” and also “Client B” initiates a Telnet session with Server “S”.
The port numbers for source and destination may vary and default port number for telnet is “23”.
- For the segments sent from “A” to “S” and “B” to “S”, the destination port number is to be same.
- For the segments sent from “S” to “A” and “S” to “B”, the source port number is to be same.
d)
Given scenario:
From the given scenario “Client A” initiates a Telnet session with Server “S” and also “Client B” initiates a Telnet session with Server “S”.
The port numbers for source and destination may vary and default port number for telnet is “23”.
- For the segments sent from “A” to “S” and “B” to “S”, the destination port number is to be same.
- For the segments sent from “S” to “A” and “S” to “B”, the source port number is to be same.
e)
Given scenario:
From the given scenario “Client A” initiates a Telnet session with Server “S” and also “Client B” initiates a Telnet session with Server “S”.
The port numbers for source and destination may vary and default port number for telnet is “23”.
- For the segments sent from “A” to “S” and “B” to “S”, the destination port number is to be same.
- For the segments sent from “S” to “A” and “S” to “B”, the source port number is to be same.
f)
Given scenario:
From the given scenario “Client A” initiates a Telnet session with Server “S” and also “Client B” initiates a Telnet session with Server “S”.
The port numbers for source and destination may vary and default port number for telnet is “23”.
- For the segments sent from “A” to “S” and “B” to “S”, the destination port number is to be same.
- For the segments sent from “S” to “A” and “S” to “B”, the source port number is to be same.
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Chapter 3 Solutions
Computer Networking: A Top-Down Approach (7th Edition)
- Consider the following three machine instructions, which appear in memory starting at the address 0x0000000080001270. Address (in hex) Contents (in hex) 0x0000000080001270 0x94000018 0x00000000800012D0 0x94000A53 0x00000000800012D4 0xD61F03C0 "Disassemble” the instructions; that is, give an assembly language program segment that would be translated into the given machine language. Use numeric rather than symbolic register names. Handle branches and jumps specially; where you would normally have a label, provide instead a hexadecimal byte address.arrow_forward8.7 An ideal germanium pn junction diode has the following parameters: Na = 4 × 10¹5 cm³, Na = 2 × 10¹7 cm³, D₂ = 48 cm²/s, D₁ = 90 cm²/s, Tpo = T = 2 × 10-6 s, and A = 104 cm². Determine the diode current for (a) a forward-bias voltage of 0.25 V and (b) a reverse-biased voltage of 0.25 V.arrow_forward7.20 (a) The peak electric field in a reverse-biased silicon pn junction is |E|= 3 × 105 V/cm. The doping concentrations are N = 4 × 10¹5 cm³ and N. = 4 × 107 cm³. Find the magnitude of the reverse-biased voltage. (b) Repeat part (a) for N₁ = 4 × 10 16 cm³ and N₁ = 4 × 10¹7 cm³. (c) Repeat part (a) for Nd = N₁ = 4 × 10¹7 cm³.arrow_forward
- 7.16 An abrupt silicon pn junction at 7-300 K has impurity doping concentrations of N₁ = 5 x 10 cm³ and N = 10 cm³. Calculate (a) Vbi, (b) W at (i) VR = 0 and (ii) VR = 5 V, and (c) [Emax | at (i) VR = 0 and (ii) VR = 5.arrow_forwardCan you help me solve this in matlabarrow_forwardNeed help using this problem on matlabarrow_forward
- I need help with this problem and an explanation of the solution for the image described below. (Introduction to Signals and Systems)arrow_forwardDO NOT USE AI, THEY WILL MESS UParrow_forwardDesign an ER diagram for a Hospital Management System. Include weak and strong entity sets, attributes, and relationships.arrow_forward
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