Question: PLEASE USE THE EXAMPLE BELOW TO HELP SOLVE THE PROBLEM. THE EXAMPLE BELOW HAS THE CORRECT ANSWERS A frame is formatted as follows: Frame Type

PLEASE USE THE EXAMPLE BELOW TO HELP SOLVE THE

PLEASE USE THE EXAMPLE BELOW TO HELP SOLVE THE

PLEASE USE THE EXAMPLE BELOW TO HELP SOLVE THE PROBLEM. THE EXAMPLE BELOW HAS THE CORRECT ANSWERS

PLEASE USE THE EXAMPLE BELOW TO HELP SOLVE THE

PLEASE USE THE EXAMPLE BELOW TO HELP SOLVE THE

A frame is formatted as follows: Frame Type Frame Data Destination Hardware Address 6 Bytes Source Hardware Address 6 Bytes 2 Bytes 46 - 1500 Bytes An IP datagram is formatted as follows: Byte bit 0 Version 0 4 0 3 4 5 6 7 8 9 10 11 12 17 18 19 20 21 22 23 24 25 29 30 31 Header Length Type Of Service Total Length Identification Flaps Fragment Offset TTL Type Header Checksum Source IP Address Destination IP Address IP Options (May Be Omitted) Padding 8 12 16 Optional 20 IP Payload Data AUDP datagram is formatted as follows 0 Dyte bit 0 0|123456789 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 Source Port Destination Port UDP Message length UDP Checksum 4 8 UDP Payload Data Assuming no options are present in the IP header.answer the following questions for the given frame: FO CD DE 4B 4EA0 31 SE 61 CF|JF| E7 08 00 45 65 00 72 C3 E2 34 4F DI 03 BAC 63 99 06 AC DB A8 C295 57 51 30 062A 6A 4F 4C 52 E5 EC 76 06 ES 68 IF SD 4EEF SF 63 44 89 FDC2 IF AA 9A D6 F4 24 15 | ER 42 | SA F4 SI ED A6 CI DO DA 64 08 85 BS E3 A77A ID S8 EU 10 BF AJ C9 35 FE 32 18 F6 DB SF 72 IF|CD9C 08 SI CA 27 6F 32 39 52 SD A9 30 AD 39 9D 96 24 67 FC 31 IA F7C5 20 CB C9D3 Sadecimal) r. Destination IP address host ID (Hexadecimal) 3. Destination IP address in dotted decimal notation (Dotted Decimal) Can this message be delivered directly by the source to the destination, or will it require routers to handle the message? UDP source port (Hexadecimal) UDP destination port (Hexadecimal) UDP Message Length (Hexadecimal) UDP checksum (Hexadecimal) (Router No Router) The first five bytes of the UDP datagram data (Hexadecimal) E3 9E B7 DF 36 63 00 72 6D 31 29 58 85 9F | AC 35 2B | D7 75 B6 50 AD 05 51 A2 56 19 F5 AS 2F 16 7B 04 7F CE D7| AE 97 76 89 AO A4 70 78 1E SE ED 37 BF A8 F3 B9 57 CC OB OC 7B 15 F5A9CDDB 1A 71 F4 34 B5 9F 35 D3 B4 63 E8 8F 01 9B 3D 84 ES 91 39 B9 40 31 76 77 45 D9 BI 48 01 C3 DB 08 BE 47 85 8B 37 29 82 00 45 DS 80 OC 70 D2 94 FD 99 IED6 CO ID 81 8F FS CE 54 OA 35 16 F3 88 66 o la 15 7B 76 10110111 11011111 00110110 01100011 00111110 01110110 El 100010010000101100001100 01111011 00010101 11100001 0000100000000000 01000101 11010101 0000000001110010 0110110100110001 00101001 10100000 00001001 10100000 10100100 11110101 10101001 11001101 11011011 00011010 1011111010000000 Destination Hardware Address Source Hardware Address Frame Type Vers & Lan Type Of Service Total Length Ident Flags & Fragment Offset Flags Fragment Offset TIL Type Heada Checksum Source IP Address Class Network Host Source IP Address (Decimal) Datination IP Address Class Network Host Destination IP Address (Decimal) Source Port Destination Port UDP Message Length UDP Checksum Payload Data B7 DF 36 63 89 OB OC 08 00 45 DS 00 72 6D 31 29 A01 More Fragments 091 A0 A4 FS A9) CD DB| LA BE 80 DB 80 26 1901 128 OC 70 E3 58 A 70 E3 58 12 112 227 88 85 9F AC 70 78 71 F4 34 BS 9F 471 D2 IA 11011011 00011010 10111110 10000000 219 : 12 00001100 01110000 11100011 01011000 00001100 01110000 11100011 01011000 10000101 10011111 10101100 01110000 01111000 01110001 11110100 00110100 10110101 10011111 01000111 11010010 10010100 94

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