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NEW QUESTION: 1
Which of the following types of attacks entices a user to disclose personal information such
as social security number, bank account details, or credit card number?
A. Replay attack
B. Phishing
C. Password guessing attack
D. Spoofing
Answer: B
Explanation:
Phishing is a type of scam that entice a user to disclose personal information such as social security number, bank account details, or credit card number. An example of phishing attack is a fraudulent e-mail that appears to come from a user's bank asking to change his online banking password. When the user clicks the link available on the e-mail, it directs him to a phishing site which replicates the original bank site. The phishing site lures the user to provide his personal information. Answer option B is incorrect. Spoofing is a technique that makes a transmission appear to have come from an authentic source by forging the IP address, email address, caller ID, etc. In IP spoofing, a hacker modifies packet headers by using someone else's IP address to his identity. However, spoofing cannot be used while surfing the Internet, chatting online, etc. because forging the source IP address causes the responses to be misdirected. Answer option D is incorrect. Replay attack is a type of attack in which attackers capture packets containing passwords or digital signatures whenever packets pass between two hosts on a network. In an attempt to obtain an authenticated connection, the attackers then resend the captured packet to the system. Answer option A is incorrect. A password guessing attack occurs when an unauthorized user tries to log on repeatedly to a computer or network by guessing usernames and passwords. Many password guessing programs that attempt to break passwords are available on the Internet. Following are the types of password guessing attacks: Brute force attack Dictionary attack
Reference: "http://en.wikipedia.org/wiki/Phishing"
NEW QUESTION: 2
Refer to the exhibit.

A network administrator checks this adjacency table on a router. What is a possible cause for the incomplete marking?
A. incomplete ARP information
B. incorrect ACL
C. dynamic routing protocol failure
D. serial link congestion
Answer: A
NEW QUESTION: 3
Knowledge-based Intrusion Detection Systems (IDS) are more common than:
A. Network-based IDS
B. Application-Based IDS
C. Host-based IDS
D. Behavior-based IDS
Answer: D
Explanation:
Knowledge-based IDS are more common than behavior-based ID systems. Source: KRUTZ, Ronald L. & VINES, Russel D., The CISSP Prep Guide: Mastering the Ten Domains of Computer Security, 2001, John Wiley & Sons, Page 63. Application-Based IDS - "a subset of HIDS that analyze what's going on in an application using the transaction log files of the application." Source: Official ISC2 CISSP CBK Review Seminar Student Manual Version 7.0 p. 87 Host-Based IDS - "an implementation of IDS capabilities at the host level. Its most significant difference from NIDS is intrusion detection analysis, and related processes are limited to the boundaries of the host." Source: Official ISC2 Guide to the CISSP CBK - p. 197 Network-Based IDS - "a network device, or dedicated system attached to the network, that monitors traffic traversing the network segment for which it is integrated." Source: Official ISC2 Guide to the CISSP CBK - p. 196 CISSP for dummies a book that we recommend for a quick overview of the 10 domains has nice and concise coverage of the subject: Intrusion detection is defined as real-time monitoring and analysis of network activity and data for potential vulnerabilities and attacks in progress. One major limitation of current intrusion detection system (IDS) technologies is the requirement to filter false alarms lest the operator (system or security administrator) be overwhelmed with data. IDSes are classified in many different ways, including active and passive, network-based and host-based, and knowledge-based and behavior-based: Active and passive IDS An active IDS (now more commonly known as an intrusion prevention system - IPS) is a system
that's configured to automatically block suspected attacks in progress without any intervention
required by an operator. IPS has the advantage of providing real-time corrective action in
response to an attack but has many disadvantages as well. An IPS must be placed in-line along a
network boundary; thus, the IPS itself is susceptible to attack. Also, if false alarms and legitimate
traffic haven't been properly identified and filtered, authorized users and applications may be
improperly denied access. Finally, the IPS itself may be used to effect a Denial of Service (DoS)
attack by intentionally flooding the system with alarms that cause it to block connections until no
connections or bandwidth are available.
A passive IDS is a system that's configured only to monitor and analyze network traffic activity and
alert an operator to potential vulnerabilities and attacks. It isn't capable of performing any
protective or corrective functions on its own. The major advantages of passive IDSes are that
these systems can be easily and rapidly deployed and are not normally susceptible to attack
themselves.
Network-based and host-based IDS
A network-based IDS usually consists of a network appliance (or sensor) with a Network Interface
Card (NIC) operating in promiscuous mode and a separate management interface. The IDS is
placed along a network segment or boundary and monitors all traffic on that segment.
A host-based IDS requires small programs (or agents) to be installed on individual systems to be
monitored. The agents monitor the operating system and write data to log files and/or trigger
alarms. A host-based IDS can only monitor the individual host systems on which the agents are
installed; it doesn't monitor the entire network.
Knowledge-based and behavior-based IDS
A knowledge-based (or signature-based) IDS references a database of previous attack profiles
and known system vulnerabilities to identify active intrusion attempts. Knowledge-based IDS is
currently more common than behavior-based IDS.
Advantages of knowledge-based systems include the following:
It has lower false alarm rates than behavior-based IDS.
Alarms are more standardized and more easily understood than behavior-based IDS.
Disadvantages of knowledge-based systems include these:
Signature database must be continually updated and maintained.
New, unique, or original attacks may not be detected or may be improperly classified.
A behavior-based (or statistical anomaly-based) IDS references a baseline or learned pattern of
normal system activity to identify active intrusion attempts. Deviations from this baseline or pattern
cause an alarm to be triggered.
Advantages of behavior-based systems include that they
Dynamically adapt to new, unique, or original attacks.
Are less dependent on identifying specific operating system vulnerabilities.
Disadvantages of behavior-based systems include
Higher false alarm rates than knowledge-based IDSes.
Usage patterns that may change often and may not be static enough to implement an effective
behavior-based IDS.
NEW QUESTION: 4
Webアプリケーションをサポートする仮想ネットワークを設計しています。 Webアプリケーションは、Blobストレージを使用して大きな画像を保存します。 Webアプリケーションは、Azure App ServiceWebアプリにデプロイされます。
次の要件があります。
Secured Socket Layer(SSL)を使用してすべての通信を保護します
SSL暗号化と復号化は、Webアプリケーションの高いトラフィック負荷をサポートするために効率的に処理する必要がありますバックエンドコードを変更せずにWebアプリケーションをWebの脆弱性と攻撃から保護しますHTTP要求と応答を最小のネットワークを持つエンドポイントにルーティングすることにより、Webアプリケーションの応答性と信頼性を最適化しますクライアントの遅延。
要件を満たすようにAzureコンポーネントを構成する必要があります。
あなたは何をするべきか?回答するには、回答領域で適切なオプションを選択します。
注:正しい選択はそれぞれ1ポイントの価値があります。

Answer:
Explanation:

Explanation:
Box 1: Azure application Gateway
Azure Application Gateway supports end-to-end encryption of traffic. Application Gateway terminates the SSL connection at the application gateway. The gateway then applies the routing rules to the traffic, re-encrypts the packet, and forwards the packet to the appropriate back-end server based on the routing rules defined. Any response from the web server goes through the same process back to the end user.
Box 2: Azure application Gateway
https://docs.microsoft.com/en-us/azure/web-application-firewall/ag/ag-overview Box 3: Azure Traffic Manager Azure Traffic Manager is a DNS-based traffic load balancer that enables you to distribute traffic optimally to services across global Azure regions, while providing high availability and responsiveness.
References:
https://docs.microsoft.com/en-us/azure/application-gateway/application-gateway-end-to-end-ssl-powershell
https://docs.microsoft.com/en-us/azure/traffic-manager/traffic-manager-overview
https://docs.microsoft.com/en-us/azure/security-center/security-center-intro
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