spite of the advantages afforded by social networking sites they can have potentially harmful effects. It is undeniable that social networks have a lot of advantages; still they also have several disadvantages. It is common knowledge that many people‚ especially young people‚ have heard about or belong to at least one social networking site. Social networks’ users rely on these sites to maintain their social relations and entertain themselves. It seems that these networking sites offer many advantages
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Joanna Bartlomiejczyk ESTABLISH NETWORKS BSBREL401A Joanna Bartlomiejczyk CHAPTER 1 DEVELOPING AND MAINTAING BUSINESS NETWORKS BUSINESS NETWORKING is a socioeconomic activity by which groups of like-minded businesspeople recognize‚ create‚ or act upon business opportunities. A business network is a type of social network whose reason for existing is business activity. Business networking can be conducted in a local business community‚ or on a larger scale via the Internet‚ is an effective
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OCR LEVEL 3 CAMBRIDGE TECHNICAL CERTIFICATE/DIPLOMA IN IT COMPUTER NETWORKS R/601/7320 LEVEL 3 UNIT 7 GUIDED LEARNING HOURS: 60 UNIT CREDIT VALUE: 10 COMPUTER NETWORKS R/601/7320 LEVEL 3 UNIT 7 AIM OF THE UNIT This unit aims to give the learners an understanding of the key components‚ the network protocols and the services provided by network systems. Learners will develop skills required to ensure network security‚ gain an understanding to the functions of hardware and software
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When troubleshooting a computer network‚ it is very important that we look at every small detail in that network. One small mistake like a mistyped number can make all the difference in the way a network performs. In the case of the diagram E-1‚ there are many problems like this that can cause the network to not perform the way it is supposed to. Some of these problems include the IP addresses‚ subnet masks‚ and default gateways in this network. All of these things need to be correct and working
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FACULTY OF MEDIA‚ INFORMATION & COMMUNICATION TECHNOLOGY HIGHER CERTIFICATE IN INFORMATION TECHNOLOGY NETWORK ENGINEERING 511 1ST SEMESTER ASSIGNMENT Name & Surname: ____________________________________________ ICAS No: _________________ Qualification: ______________________ Semester: _____ Module Name: __________________________ Date Submitted: ___________ ASSESSMENT CRITERIA MARK ALLOCATION EXAMINER MARKS MODERATOR MARKS QUESTION 1 INTRODUCTION Outlines the subject
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encompasses the network solution and security considerations is a major consideration for your company. Considering that the company will be expanding from one (1) floor to three (3) floors in the very near future you‚ as the CIO‚ are responsible for the design of the infrastructure and security protocols. You have been tasked with designing a network that is stable‚ redundant‚ and scalable. In addition‚ speed and reliability are important considerations. Assumptions should be drawn regarding network usage
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The proposed network is designed to serve The Banana Tree Travel Agency and remote site office. The proposed office located in Cairo‚ Egypt will have two employees to better serve their international customers. The second site will have a 12 port patch panel‚ a 12 port Cisco switch‚ a Cisco router‚ and a Cisco ASA. The building adjacent to the main office‚ which is part of the same domain/network‚ will house 10 to 15 more travel agents. I will set up a file server so all users can have access to
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Muhammad Irfan Yousuf (Peon of Holy Prophet (P.B.U.H)) cos ω t: ω A + [1/CR1]B = 0 ⇒ A = -B/ω CR1 sin ω t: -ω B + [1/CR1]A = I0/C -ω B + [1/CR1][-B/ω CR1] = I0/C B = I0/C[-ω - 1/C2R12] A = -[I0/C[-ω - 1/C2R12]]/ω CR1 2000-E-41 118 Complete solution V(t) = Ke-(1/CR1)t + [-[I0/C[-ω - 1/C2R12]]/ω CR1]sin ω t + [I0/C[-ω - 1/C2R12]]cos ω t At t = 0+ V(0+) = Ke-(1/CR1)0+ + [-[I0/C[-ω - 1/C2R12]]/ω CR1]sin ω (0+) + [I0/C[-ω - 1/C2R12]]cos ω (0+) I0sin ω t [R1 + R2] = K(1) + [I0/C[-ω - 1/C2R12]] I0sin
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1.2. ACTIVITIES TIMING AND TOTAL FLOAT To determine timing of activities in the network diagram the following calculations were done for each node: Earliest Start-(ES)‚ Earliest Finish-(EF)‚ Latest Start-(LS) and Latest Finish-(LF). Field and Keller (1998‚ p. 191) ES and EF are found by using the forward pass through the network … from the unique project start node and ends at the unique project completion node. ES is the ending day for the previous node/activity‚ where more than one
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A project network illustrates the relationships between activities (or tasks) in the project. Showing the activities as nodes or on arrows between event nodes are two main ways to draw those relationships. With activities on arrow (AOA) diagrams‚ you are limited to showing only the finish-to-start relationships - that is‚ the arrow can represent only that the activity spans the time from the event at the start of the arrow to the event at the end. As well‚ "dummy" activities have to be added
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