Objectives
The main aim of this project is to provide strong connectivity among people is defined by part 2. Another aim is to provide a wide range of systematic analysis and to bring out a strong connection is defined by part 3. A major purpose of this experiment is to design network that can provide benefits for one and all. A well generated connection is a major part of weather forecasting and its creative nature is defined by part 4. Sustainable can be made through this case study and this the major target of the entire experiment.
In case of networking the major target is to set connection in all angle is explained through part 2. IP address plays a crucial in exact location from where the action are taking place and how it is happening throughout is explained through part 3. Scope also include the fact of developing multiple vision and to make connection easier for all is explained by part 4. The main result that can be solved through this case study is that the network that will help to provide multi communication site (Lucas 2009 pp.102-109).
The major objectives is to talk about different IP address the main targets of this experiment was to design proper tacking identity is explained by part 2. The objectives also includes maintaining a stable connection throughout is explained by part 3. By following the SMART principle following things have being gained is learned through part 4:
- Specific target was achieved and the connection was available to all.
- A perfect measurement was done for the route analysis circuit.
- A large extent of the goal ware made satisfying and they made a huge attention throughout.
- Interlinking and relevant points were achieved and they gain a proper succession.
- A major advantage is to define a connection that can remain in a well versed form at all sides (Witty 2010 pp.134-140).
Fig : Visio Diagram (Ohlman, 2012 p.50)
The networking site defines the locating area. It has the port address of this channel is 104.200.16.26/30. All the locations are allocated according to the designated version. A straight connected is provided through the 5 places each connecting with the LAN. The main action allows the server of database to get connected properly. It also describes several stages of implications and how and when the line-up can be set. The connection is made stronger so that it can be gained a wider connection even when passing through sea. SEATTLE was made the strongest point and it defined an all over describing sections in all cases. It also showed certain manufacturing parts that can get connected through all WLAN. The wires are made connecting and this defines a steady state. The user makes the part wide allocating and the changes get attached with all doting sites.
The servers are attached through series of LAN and they are defined through and designed by different perspective. The main line is attached through wires and it can gets communicable all around. The lines get attached at every meet and they show a duration of scale showing severity of every aspect. The manufacture and their procedures are cured and aligned at every point of management. The internet has two versions of the user and of the databases. The main connection takes place by route analysis. The modelling of cloud is interlinked here. Through the entire mechanism, the generations are passed and they are described accordingly. The IP needs to get attached and they get aligned according to the model suggested. For each row a series of 2 rows are used for each case. It also describes several descriptions and how the exact alignment happens. The series also defines the generations of current produced for this network and its action (Calvert 2009 pp.227-238).
Network Specification and diagram
Subnets |
||
Subnet name |
Subnet Address |
Subnet mask |
Seoul.01 |
104.200.16.26/30 |
104.200.16.26/400 |
Seattle.02 |
104.200.16.26/14 |
104.200.16.26/70 |
San Francisco.03 |
104.200.16.26/14 |
104.200.16.26/150 |
Osaka.04 |
104.200.16.26/14 |
104.200.16.26/50 |
Hong Kong .05 |
104.200.16.26/30/18 |
104.200.16.26/80 |
Vancouver |
104.200.16.26/30/18 |
104.200.16.26/15 |
Router Interfaces |
|||
Location |
Interface |
IP address |
Subnet Mask |
Seoul.01 |
104.200.16.26/30 |
104.200.16.26/400 |
104.200.16.26/400 |
Seattle.02 |
104.200.16.26/14 |
104.200.16.26/70 |
104.200.16.26/70 |
San Francisco.03 |
104.200.16.26/14 |
104.200.16.26/150 |
104.200.16.26/150 |
Osaka.04 |
104.200.16.26/14 |
104.200.16.26/50 |
104.200.16.26/50 |
Hong Kong .05 |
104.200.16.26/30/18 |
104.200.16.26/80 |
104.200.16.26/80 |
Vancouver |
104.200.16.26/30/18 |
104.200.16.26/15 |
104.200.16.26/15 |
Servers |
Servers |
Servers |
Servers |
Location |
Interface |
IP address |
Subnet Mask |
Seoul.01 |
104.200.16.26/30 |
104.200.16.26/400 |
104.200.16.26/400 |
Seattle.02 |
104.200.16.26/14 |
104.200.16.26/70 |
104.200.16.26/70 |
San Francisco.03 |
104.200.16.26/14 |
104.200.16.26/150 |
104.200.16.26/150 |
Osaka.04 |
104.200.16.26/14 |
104.200.16.26/50 |
104.200.16.26/50 |
Hong Kong .05 |
104.200.16.26/30/18 |
104.200.16.26/80 |
104.200.16.26/80 |
Vancouver |
104.200.16.26/30/18 |
104.200.16.26/15 |
104.200.16.26/15 |
The class B network is attached and it has expansion according to the additional site. The allocating varies design defines the variation process. The address of IP and its section as IP address of 104.200.16.26/30 is mentioned. This is done according to the variation process and they are described as according to the range of dotting values. The writer and its domain gets identified through this matter. The allowance is matched and linked with different degree and their locating targets. The correct address are enhanced according to correct drawings and done by various process generation. The allocation is dependent on several locating targets and its origin of developer (H.P 2011 pp.1152-1161).
The main approach is set on the fact of having a connection in such a way so that the highlights takes place from one part to the other. The main aim is that recognition should be given equal alignment study and it should be linked with all the sections of channelling. The part of attachment and its study is considered with several section. The route and WLAN was connected in a vice versa manner, so that no disrupt. Here both the hardware and the software were conglomerated and they had several concept and aligned study. No interruptions or justifying manual creativeness was developed. All connections were made assigned digitally (Newton 2011).
The main attributes and features of this study is to provide a connection that is completely wireless based. It provides different issues in a positive side that disconnection does not take place. The routes and the switches are made automated so that no charging problem occurs. The LANS are controlled here through the switch pattern. The connection was attached at underlying base so that no illusive nature gets hampered. The routers were developed in parallel section for each case. It showed different allured parts with excess modulations.
For the entire process a total budget of $10,000 was allocated. This was showed that the budget was high and thus it helped to show different prospect of several strength full portion of linking of object model and for the entire process the linked part was made stronger. The amount of variation happened actually showed the link that there is no danger and it was made full safety proof. Even the marks and the landings developed that gave a marking which has a strong switching. The light produced helps in showing the sensations and its connections. This development almost took one year long proceedings (Kim 2011 pp.47-75)
Subnets |
Subnets |
Subnets |
Subnets |
Subnet name |
Subnet Address |
Subnet mask |
|
1.01 |
104.200.16.26/30 |
104.200.16.26/400 |
104.200.16.26/400 |
1.02 |
104.200.16.26/14 |
104.200.16.26/70 |
104.200.16.26/70 |
1.03 |
104.200.16.26/14 |
104.200.16.26/150 |
104.200.16.26/150 |
1.04 |
104.200.16.26/14 |
104.200.16.26/50 |
104.200.16.26/50 |
1.05 |
104.200.16.26/30/18 |
104.200.16.26/80 |
104.200.16.26/80 |
1.06 |
104.200.16.26/30/18 |
104.200.16.26/15 |
104.200.16.26/15 |
Servers |
|||
Location |
Interface |
IP address |
Subnet Mask |
1.01 |
104.200.16.26/30 |
104.200.16.26/400 |
104.200.16.26/400 |
1.02 |
104.200.16.26/14 |
104.200.16.26/70 |
104.200.16.26/70 |
1.03 |
104.200.16.26/14 |
104.200.16.26/150 |
104.200.16.26/150 |
1.04 |
104.200.16.26/14 |
104.200.16.26/50 |
104.200.16.26/50 |
1.05 |
104.200.16.26/30/18 |
104.200.16.26/80 |
104.200.16.26/80 |
1.06 |
104.200.16.26/30/18 |
104.200.16.26/15 |
104.200.16.26/15 |
Router Interfaces |
||
Location |
Interface |
IP address |
1 |
104.200.16.26/30 |
104.200.16.26/400 |
2 |
104.200.16.26/14 |
104.200.16.26/70 |
3 |
104.200.16.26/14 |
104.200.16.26/150 |
4 |
104.200.16.26/14 |
104.200.16.26/50 |
5 |
104.200.16.26/30/18 |
104.200.16.26/80 |
6 |
104.200.16.26/30/18 |
104.200.16.26/15 |
COMPONENTS |
PRICES |
Routers |
$1000 |
Switches |
$2000 |
Wires |
$500 |
LAN |
$500 |
WLAN |
$1000 |
Composite section |
$1000 |
Landings |
$2000 |
Mixing wires |
$1000 |
Trackers |
$1000 |
Total |
$10000 |
Sub-netting the network
The major part of Amazon servicing was to provide a strong network that generated different signalling easier. Through this process the difficulty level gets reduced, thus showing the exact version of components and its rigid stability. The entire programming actually defines how each sector gets deposited here and how all the allocations takes place, at that point it is really helpful to maintain the strength line so that sudden rupture does not take place. It also enlist the portion in several directions showing the magnitude in the exact correct relation. The magnitude gets correlated with the tangents and their networking is shown in that stable manner (Pauwels 2009 pp.90-102).
The desktop has several culmination and for each process the sectioning should be done brightly. With the true aspect of knowledge, the highlighted part gets the major helping zone. The wireless connection should have strong connectivity and this will help to define the exact connection that actually varies from several parts. The dictionaries are made here according to the concept of data gain and data loss. The lining version and the connectivity happens through different allocative section. The clouding model will always give tenacity to maintain strong connection with diluted part. It is always beneficial to avoid the concentration process. The values get measured accordingly showing every aspect of concentrations.
With a high standard of contract and their implications shows the value of the prices and how each can improve. The exact quality is provided and this had really shown a strong connection. This perfect workstations really helps in maintain the certain standings that gives strong network. The improvement for activity can be done by increasing the power as well as the serving the best line up. The quadrant makes the zoning perfect here and thus stability with every part has a perfect linear study. With zoning and its lining the meta-dictionary and its collection helps to sum up and provide the zoning (Ohlman, 2012 p.50).
Ahlgren, B., Dannewitz, C., Imbrenda, C., Kutscher, D. and Ohlman, B., 2012. A survey of information-centric networking. IEEE Communications Magazine, 50(7).
Chu, S.C. and Kim, Y., 2011. Determinants of consumer engagement in electronic word-of-mouth (eWOM) in social networking sites. International journal of Advertising, 30(1), pp.47-75.
Lin, K.Y. and Lu, H.P., 2011. Why people use social networking sites: An empirical study integrating network externalities and motivation theory. Computers in human behavior, 27(3), pp.1152-1161.
Newton, H., 2011. Newton’s Telecom Dictionary: Telecommunications, Networking, Information Technologies, The Internet, Wired, Wireless, Satellites and Fiber. Flatiron Publishing.
Pempek, T.A., Yermolayeva, Y.A. and Calvert, S.L., 2009. College students’ social networking experiences on Facebook. Journal of applied developmental psychology, 30(3), pp.227-238.
Roblyer, M.D., McDaniel, M., Webb, M., Herman, J. and Witty, J.V., 2010. Findings on Facebook in higher education: A comparison of college faculty and student uses and perceptions of social networking sites. The Internet and higher education, 13(3), pp.134-140.
Trusov, M., Bucklin, R.E. and Pauwels, K., 2009. Effects of word-of-mouth versus traditional marketing: findings from an internet social networking site. Journal of marketing, 73(5), pp.90-102.
Waters, R.D., Burnett, E., Lamm, A. and Lucas, J., 2009. Engaging stakeholders through social networking: How nonprofit organizations are using Facebook. Public relations review, 35(2), pp.102-106.