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Many traditional industries are forced to follow the trend.
NEW QUESTION: 1
You work as an ASP.NET Web Application Developer for SomeCompany.
The company uses Visual Studio .NET 2010 as its application development platform.
You have recently finished the development of an ASP.NET Web application using .NET Framework 4.0.
Now, you are deploying the ASP.NET Web application to a remote server.
You are required to select a deployment method that will make sure that all Internet Information Services
(IIS) settings, in addition to the Web content, are deployed to the remote server.
Which of the following deployment methods will you select to accomplish this?
A. Web Setup project
B. Web Deployment Tool
C. Deployment manifest
D. Web-based deployment
Answer: B
NEW QUESTION: 2
The project manager for a TV tower construction project receives notification that a strong storm is expected the following week.
Which of the following should the project manager do NEXT?
A. Evaluate the risk, develop a mitigation plan, and communicate it according to the communication plan.
B. Evaluate the risk, inform major stakeholders about the problem, and issue a change request immediately.
C. Evaluate the risk, reschedule all outdoor tasks for a later time, and inform major stakeholders.
D. Evaluate the risk, fill in the issue log, and communicate it according to the communication plan.
Answer: A
Explanation:
References: Kim Heldman, CompTIA Project+ Study Guide, 2nd Edition, Sybex, Indianapolis, 2017, p. 238
NEW QUESTION: 3
Which of the following is true about link encryption?
A. Only secure nodes are used in this type of transmission.
B. Encrypted messages are only decrypted by the final node.
C. This mode does not provide protection if anyone of the nodes along the transmission path is compromised.
D. Each entity has a common key with the destination node.
Answer: C
Explanation:
In link encryption, each entity has keys in common with its two neighboring nodes in the transmission chain.
Thus, a node receives the encrypted message from its predecessor, decrypts it, and then re-encrypts it with a new key, common to the successor node. Obviously, this mode does not provide protection if anyone of the nodes along the transmission path is compromised.
Encryption can be performed at different communication levels, each with different types of protection and implications. Two general modes of encryption implementation are link encryption and end-to-end encryption.
Link encryption encrypts all the data along a specific communication path, as in a satellite link, T3 line, or telephone circuit. Not only is the user information encrypted, but the header, trailers, addresses, and routing data that are part of the packets are also encrypted. The only traffic not encrypted in this technology is the data link control messaging information, which includes instructions and parameters that the different link devices use to synchronize communication methods. Link encryption provides protection against packet sniffers and eavesdroppers.
In end-to-end encryption, the headers, addresses, routing, and trailer information are not encrypted, enabling attackers to learn more about a captured packet and where it is headed.
Reference(s) used for this question:
Harris, Shon (2012-10-25). CISSP All-in-One Exam Guide, 6th Edition (pp. 845-846). McGraw-Hill.
And:
KRUTZ, Ronald L. & VINES, Russel D., The CISSP Prep Guide: Mastering the Ten Domains of
Computer Security, John Wiley & Sons, 2001, Chapter 4: Cryptography (page 132).