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NEW QUESTION: 1
Contoso, Ltd., has a headquarters in London and has 20 branch sites. Each branch site connects to the
headquarters by using a Virtual Private Network (VPN) over the Internet. The company plans to implement
Skype for Business Server 2015. Before they start deploying the solution, they want to ensure that the
network is capable of the required media traffic that the new solution will produce. The following image
shows the results of the network traffic simulation.
You complete the network traffic simulation.
You need to improve media quality on the network.
Which three actions should you perform? Each correct answer presents part of the solution.
A. Ensure all network devices respect Quality of Service (QoS) tagging.
B. Change network links to a managed Multiprotocol Label Switching (MPLS) network.
C. Enable Forward Error Correction to address the packet loss.
D. Disable Forward Error Correction to reduce the network overhead.
E. Enable Quality of Service (QoS) for Skype for Business.
Answer: A,B,E
NEW QUESTION: 2
Which of the following attacks could be used to initiate a subsequent man-in-the-middle attack?
A. Brute force
B. DoS
C. Replay
D. ARP poisoning
Answer: C
Explanation:
A replay attack (also known as playback attack) is a form of network attack in which a valid data transmission is maliciously or fraudulently repeated or delayed. This is carried out either by the originator or by an adversary who intercepts the data and retransmits it, possibly as part of a masquerade attack by IP packet substitution (such as stream cipher attack).
For example: Suppose Alice wants to prove her identity to Bob. Bob requests her password as proof of identity, which Alice dutifully provides (possibly after some transformation like a hash function); meanwhile, Eve is eavesdropping on the conversation and keeps the password (or the hash). After the interchange is over, Eve (posing as Alice) connects to Bob; when asked for a proof of identity, Eve sends Alice's password (or hash) read from the last session, which Bob accepts thus granting access to Eve.
Countermeasures: A way to avoid replay attacks is by using session tokens: Bob sends a onetime token to Alice, which Alice uses to transform the password and send the result to Bob (e.g. computing a hash function of the session token appended to the password). On his side Bob performs the same computation; if and only if both values match, the login is successful. Now suppose Eve has captured this value and tries to use it on another session; Bob sends a different session token, and when Eve replies with the captured value it will be different from Bob's computation. Session tokens should be chosen by a (pseudo-) random process. Otherwise Eve may be able to pose as Bob, presenting some predicted future token, and convince Alice to use that token in her transformation. Eve can then replay her reply at a later time (when the previously predicted token is actually presented by Bob), and Bob will accept the authentication. One-time passwords are similar to session tokens in that the password expires after it has been used or after a very short amount of time. They can be used to authenticate individual transactions in addition to sessions. The technique has been widely implemented in personal online banking systems. Bob can also send nonces but should then include a message authentication code (MAC), which Alice should check. Timestamping is another way of preventing a replay attack. Synchronization should be achieved using a secure protocol. For example Bob periodically broadcasts the time on his clock together with a MAC. When Alice wants to send Bob a message, she includes her best estimate of the time on his clock in her message, which is also authenticated. Bob only accepts messages for which the timestamp is within a reasonable tolerance. The advantage of this scheme is that Bob does not need to generate (pseudo-) random numbers, with the trade-off being that replay attacks, if they are performed quickly enough i.e. within that 'reasonable' limit, could succeed.
NEW QUESTION: 3
A company purchased an indoor mesh deployment using the 7005 controller and the AP 115 models,
where 5 APs will be deployed on a floor to provide wireless internet access for users. Users may open
VPN tunnels using software clients over the wireless network to a 3rd party VPN concentrator overseas.
The company wants to limit wireless user access to TCP traffic locally and VPN traffic overseas.
In addition to the base AOS, which licenses will be necessary for this deployment?
A. VPN, PEF-NG
B. PEF-NG, PEF-V
C. AP Capacity
D. AP Capacity, PEF-NG, VPN
E. AP Capacity, PEF-NG
Answer: E
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