ED:F9:44:45:66 R1 10.1.1.1/2 198.150.11.33 198.150.11.45 ED:F9:FE:44:AF DD:EC:BC:AB:04:AC the above network dia
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- Assignment 2 Page Replacement A computer has four page frames. The time of loading, time of last access, and the R and M bits for each page are as shown below (the times are in clock ticks): Page Loaded Last ref. R M 126 279 230 260 1 0 120 272 11 3. 160 280 11 1. Which page will NRU replace? 2. Which page will FIFO replace? 3. Which page will LRU replace? 4. Which page will second chance replace?PC-PT PC-PT POPT PE2 PC5 PCPT PC4 2960 24TT Sw1 192.168.10.1 192.168.30.1 10.10.10.2 2811 10.10.20.2 2950T-24 SW2 Switth-PT SW3 2811 R2 R3 192.168.20.1 10.10.20.1 PC-PT 10.10.10.1 PC-PT PC3 PCO 2811 R1 Q. 2 (a) When dynamic routing would be preferred over static routing? Refer to the above figure, a summarized static route has been configured in Router R1. R1(config)# ip route 192.168.0.0 255.255.0.0 10.10.20.2 Will this command create any problem? Yes or No. Explain.16 Consider a paging system that uses the "Not Recently Used" (NRU) page replacement algorithm. What is the significance of the "R bit" and the "M bit"? When are the R bit and M bit set and reset? How is a page chosen for replacement?
- 11. What is the height of this BST? (10 30 root [h=0] 48 84 94 95Player Team W L ERA SO/IP HR/IP R/IP Verlander, J DET 24 5 2.40 1.00 0.10 0.29 Beckett, J BOS 13 7 2.88 0.91 0.11 0.33 Wilson, C TEX 16 7 2.93 0.92 0.07 0.39 Sabathia, C NYY 19 8 2.99 0.96 0.06 0.37 Haren, D LAA 16 10 3.17 0.81 0.07 0.37 McCarthy, B OAK 9 9 3.31 0.71 0.05 0.42 Santana, E LAA 11 12 3.37 0.78 0.10 0.41 Lester, J BOS 15 9 3.46 0.94 0.10 0.39 Hernandez, F SEA 14 14 3.47 0.95 0.07 0.41 Buehrle, M CWS 13 9 3.58 0.52 0.09 0.44 Pineda, M SEA 9 10 3.74 1.00 0.10 0.43 Colon, B NYY 8 10 4.00 0.81 0.12 0.52 Tomlin, J CLE 12 7 4.25 0.54 0.14 0.47 Pavano, C MIN 9 13 4.29 0.46 0.10 0.54 Danks, J CWS 8 12 4.33 0.79 0.11 0.51 Guthrie, J BAL 9 17 4.32 0.62 0.12 0.54 Lewis, C TEX 14 10 4.39 0.83 0.16 0.51 Scherzer, M DET 15 9 4.42 0.89 0.14 0.52 Davis, W TB 11 10 4.44 0.57 0.13 0.51 Porcello, R DET 14 9 4.75 0.56 0.09 0.57 Major League Baseball (MLB) consists of teams that play in the American League and the National League. MLB collects a wide…Determine the duty cycle of the waveform
- 9. 101011.11 * 10.101 10.42s * 21s 11.2A16 * 1.9165,45,6 7.8 NFAPlayer Team W L ERA SO/IP HR/IP R/IP Verlander, J DET 24 5 2.40 1.00 0.10 0.29 Beckett, J BOS 13 7 2.88 0.91 0.11 0.33 Wilson, C TEX 16 7 2.93 0.92 0.07 0.39 Sabathia, C NYY 19 8 2.99 0.96 0.06 0.37 Haren, D LAA 16 10 3.17 0.81 0.07 0.37 McCarthy, B OAK 9 9 3.31 0.71 0.05 0.42 Santana, E LAA 11 12 3.37 0.78 0.10 0.41 Lester, J BOS 15 9 3.46 0.94 0.10 0.39 Hernandez, F SEA 14 14 3.47 0.95 0.07 0.41 Buehrle, M CWS 13 9 3.58 0.52 0.09 0.44 Pineda, M SEA 9 10 3.74 1.00 0.10 0.43 Colon, B NYY 8 10 4.00 0.81 0.12 0.52 Tomlin, J CLE 12 7 4.25 0.54 0.14 0.47 Pavano, C MIN 9 13 4.29 0.46 0.10 0.54 Danks, J CWS 8 12 4.33 0.79 0.11 0.51 Guthrie, J BAL 9 17 4.32 0.62 0.12 0.54 Lewis, C TEX 14 10 4.39 0.83 0.16 0.51 Scherzer, M DET 15 9 4.42 0.89 0.14 0.52 Davis, W TB 11 10 4.44 0.57 0.13 0.51 Porcello, R DET 14 9 4.75 0.56 0.09 0.57 Due to a recent change by Microsoft you will need to open the XLMiner Analysis ToolPak add-in manually from the home ribbon.…
- A Moving to the next question prevents changes to this answer. uestion 12 Calculate the metric for the following EIGRP network (from RI to R4) S 0/0/1 G 0/0 S 0/0/1 R2 R1 1024 Kbps G 0/0 R4 Fa 0/1 Fa 0/0 172.16.1.0 /24 192.168.1.0 /24 A Moving to the next question prevents changes to this answer.SUBJECT : COMPUTER NETWORKING (PLEASE PROVIDE COMPLETE RELEVANT SOLUTION) Mr. Hadi sent an email using 01 Gbps network bandwidth which contained a message size of 2.5-KB (Kilobyte). Mr. John is X km away from sender (where X is 627) who received email at speed of light travels at 2.4 × 108 m/s. You may need to calculate propagation time and the transmission time for the entire communication. Draw the figure by labelling all above mentioned values and add screen shot in your answer along with your solution.Subnetting (Subnetting) Fill in the blanks. (don't use step by step answer just fill up the blanks) Number of needed usable hosts: 8,000 Network Address : 135,70.0.0 Address class : Default subnet mask : Costum subnet mask : Total number of subnets : Total number of host addresses : Number of usable addresses : Number of bits borrowed : What is the 6th subnet range? : What is the subnet number for the 7th subnet? : What is the subnet broadcast address for 3rd subnet? : What are the assignable addresses for the 5th subnet? :