Note: This is an historic document. We are no longer maintaining the content‚ but it may have value for research purposes. Pages linked to from the document may no longer be available. Trends in Denial of Service Attack Technology CERT® Coordination Center Kevin J. Houle‚ CERT/CC George M. Weaver‚ CERT/CC In collaboration with: Neil Long Rob Thomas v1.0 October 2001 CERT and CERT Coordination Center are registered in the U.S. Patent and Trademark Office. Copyright 2001 Carnegie Mellon University
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Project in CISCO III AICS Cubao Submitted by: Section: AE3DA Michael S. Filio 17/07/2014 Submittted to: Sir.Lourwel Alfonso LAN Design The community college LAN design is a multi-campus design‚ where a campus consists of multiple buildings and services at each location‚ as shown. Figure 3-1 Community College LAN Design Figure 3-2 shows
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Student Name | | Class | 230 | Date | 2/2/13 | VBScript IP Array Report In the space provided below‚ copy and paste your VBScript Program Code. If it doesn’t fit‚ use the next page for the continuation of your sourcecode program ’ VBScript: IP_Array_start.vbs ’ Written by: ’ Date: 02/2/13 ’ Class: COMP230 ’ Professor: Johnson ’ =================================== ’ Below is an initialize a 2-dimension ’ array of IP Address. The 1st index ’ +100 is the room# and the 2nd index
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CCNA Study Notes S.J. Iveson www.routerzone.com Preface This document is only relevant: • • • Up to version 12.05 of the Cisco IOS. To the CCNA v1.0 track. To the material taught on the ICRC course. You should not try to use this document as a cheat to be memorised or learnt by rote in order to pass the BSCN exam without attending a course or having any practical experience. This is generally not possible with Cisco exams anyway‚ due to their structure and depth. This guide
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’ =================================== ’ This initialize a 2-dimension array ’ of IP Address. The first index +100 ’ is the room# and the second index+1 ’ is the computer# in the room. dim ipAddress(5‚3) ipAddress(0‚0)="192.168.10.11" ipAddress(0‚1)="192.168.10.12" ipAddress(0‚2)="192.168.10.13" ipAddress(0‚3)="192.168.10.14" ipAddress(1‚0)="192.168.10.19" ipAddress(1‚1)="192.168.10.20" ipAddress(1‚2)="192.168.10.21" ipAddress(1‚3)="192.168.10.22" ipAddress(2‚0)="192.168.10.27" ipAddress(2
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figuring out if our legal system promotes bad ethics and what they are doing in trying to make it into god ethics. Then lastly I will be going over the role of judges in promoting good legal ethical practices in our society as of today. UNIT 1 IP Introduction In this individual project I will be analyzing and explaining the state of our legal system in terms of ethics as a personal and business standpoint. Secondly I will be figuring out if our legal system promotes bad ethics and what they
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is much scalable to very large internetworks. RIP cannot handle Variable Length Subnet Masks (VLSM) and CIDR compared to OSPF. This is considered one of the major flaws in implementing RIP given the shortage of IP addresses and the flexibility VLSM gives in the efficient assignment of IP addresses. In contrast to OSPF‚ RIP is less secure and it has poor robustness as RIP only stores one path to a destination. Furthermore‚ RIP converges slower than OSPF. In large networks convergence gets to be in
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Report 1. Provide an IP addressing plan for the existing campus and the new campus. (70 points) The internal network will use private ip addresses‚ while the external network will use a public ip addressing scheme. The modems for all sites will use static public ip addresses. This will help to keep the ip address the same at each site and to make it possible to for the sites to connect to one another. All of the computers attached to the network will be using dynamic ip addresses in which will
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User Responses: c.Network Feedback: a.Routers operate at the network layer making routing decisions based on IP addresses. 3. Which of the following is NOT a private IPv4 address? Choose all that apply. a. 192.168.5.60 b. 172.25.6.4 c. 10.0.6.5 d. 26.68.6.1 Grade: 1 User Responses: d.26.68.6.1 Feedback: a.The private IP address ranges are as follows. IP Class Assigned Range Class A 10.0.0.0-10.255.255.255 Class B 172.16.0.0-172.31.255.255 Class C 192.168.0.0-192
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Labs Detailed Lab Step Answers: 49 answers Step 2. FastEthernet0/0 192.1.1.129 Serial0/1/0 192.1.1.2 Step 6. It will put them on both interfaces due to the IP address. Fa 0/0 and Serial 0/0/1 Step 8: R2 is directly connected to 192.1.1.128/26 & 192.1.1.0/26 It learned a route from R1 on 192.1.1.64/26 Step 10: R1 is directly connected to 192.1.1.0/26 & 192.1.1.64/26 R1 has learned a new route from
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