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NEW QUESTION: 1
What acceleration techniques are NOT used for ProxySG WAN Acceleration?
A. Byte caching
B. IP layer route optimization
C. Bandwidth management (traffic shaping)
D. Protocol optimization and compression
E. Object caching
Answer: B
Explanation:
Reference:https://bto.bluecoat.com/sgos/ProxySG//Mobile/Advanced/Content/01Concepts/traffic_ management_co.htm

NEW QUESTION: 2
Which two steps should a Case Admin perform to identify failed sources, perform quality control checks, and verify data characteristics after a discovery job completes? (Select two.)
A. check statistics on attachments to understand the total number of reviewable items in the data population
B. check the Exceptions page for discovery exceptions or failures
C. check Processing Statistics to view data volume and de-duplication statistics from the discovery job
D. check the Custodians page to verify that the custodian count and names are accurate
E. search "fail" on Sources & Pre-Processing page to determine whether any source has a status message indicating failure
Answer: D,E

NEW QUESTION: 3
침입 탐지 시스템 (IDS)의 작동에서 가장 공통적 인 문제는 다음과 같습니다.
A. DoS (Denial-of-Service) 공격.
B. 위양성 탐지.
C. 트랩 메시지를 수신 중입니다.
D. 불량 오류율.
Answer: B
Explanation:
설명:
구성 및 IDS 기술이 작동하는 방식 때문에 IDS를 작동하는 주된 문제는 실제 보안 문제가 아닌 사건 (예 : 거짓 긍정, 잘못된 경보와 동일)의 인식 (탐지)입니다. IS 감사인은이를 인식하고 IDS 튜닝과 같은 관련 컨트롤의 구현 여부와 이벤트가 보안 사고인지 거짓인지 여부를 확인하는 심사 프로세스와 같은 사고 처리 절차를 확인해야합니다. 트랩 메시지는 중요한 이벤트가 발생할 때 SNMP (Simple Network Management Protocol) 에이전트에 의해 생성되지만 보안 또는 IDS와 관련이 없습니다. 거부율은 생체 인식 기술과 관련이 있으며 IDS와 관련이 없습니다. 서비스 거부는 일종의 공격이며 IDS의 운영에는 문제가되지 않습니다.

NEW QUESTION: 4
What would you call the process that takes advantages of the security provided by a transmission protocol by carrying one protocol over another?
A. Concealing
B. Tunneling
C. Piggy Backing
D. Steganography
Answer: B
Explanation:
Computer networks use a tunneling protocol when one network protocol (the delivery protocol) encapsulates a different payload protocol. By using tunneling one can (for example) carry a payload over an incompatible delivery-network, or provide a secure path through an untrusted network.
Tunneling typically contrasts with a layered protocol model such as those of OSI or TCP/IP. The delivery protocol usually (but not always) operates at a higher level in the model than does the payload protocol, or at the same level. To understand a particular protocol stack, network engineers must understand both the payload and delivery protocol sets.
As an example of network layer over network layer, Generic Routing Encapsulation (GRE), a protocol running over IP (IP Protocol Number 47), often serves to carry IP packets, with RFC 1918 private addresses, over the Internet using delivery packets with public IP addresses. In this case, the delivery and payload protocols are compatible, but the payload addresses are incompatible with those of the delivery network. Secure Shell tunneling
A Secure Shell (SSH) tunnel consists of an encrypted tunnel created through a SSH protocol connection. Users may set up SSH tunnels to transfer unencrypted traffic over a network through an encrypted channel. For example, Windows machines can share files using the Server Message Block (SMB) protocol, a non-encrypted protocol. If one were to mount a Microsoft Windows file-system remotely through the Internet, someone snooping on the connection could see transferred files. To mount the Windows file-system securely, one can establish an SSH tunnel that routes all SMB traffic to the remote fileserver through an encrypted channel. Even though the SMB protocol itself contains no encryption, the encrypted SSH channel through which it travels offers security. Tunneling to circumvent firewall policy Users can also use tunneling to "sneak through" a firewall, using a protocol that the firewall would normally block, but "wrapped" inside a protocol that the firewall does not block, such as HTTP. If the firewall policy does not specifically exclude this kind of "wrapping", this trick can function to get around the intended firewall policy.
Another HTTP-based tunneling method uses the HTTP CONNECT method/command. A client
issues the HTTP CONNECT command to a HTTP proxy. The proxy then makes a TCP connection
to a particular server:port, and relays data between that server:port and the client connection.
Because this creates a security hole, CONNECT-capable HTTP proxies commonly restrict access
to the CONNECT method. The proxy allows access only to a whitelist of specific authorized
servers.
The following answers are incorrect:
Piggy Backing
In security, piggybacking refers to when a person tags along with another person who is
authorized to gain entry into a restricted area, or pass a certain. The act may be legal or illegal,
authorized or unauthorized, depending on the circumstances. However, the term more often has
the connotation of being an illegal or unauthorized act.
To describe the act of an unauthorized person who follows someone to a restricted area without
the consent of the authorized person, the term tailgating is also used. "Tailgating" implies without
consent (similar to a car tailgating another vehicle on the freeway), while "piggybacking" usually
implies consent of the authorized person.
Piggybacking came to the public's attention particularly in 1999, when a series of weaknesses
were exposed in airport security. While a study showed that the majority of undercover agents
attempting to pass through checkpoints, bring banned items on planes, or board planes without
tickets were successful, piggybacking was revealed as one of the methods that was used in order
to enter off-limits areas.
Steganography
Steganography is the art and science of writing hidden messages in such a way that no one, apart
from the sender and intended recipient, suspects the existence of the message, a form of security
through obscurity. The word steganography is of Greek origin and means "concealed writing" from
the Greek words steganos () meaning "covered or protected", and graphein () meaning "to write".
The first recorded use of the term was in 1499 by Johannes Trithemius in his Steganographia, a
treatise on cryptography and steganography disguised as a book on magic. Generally, messages
will appear to be something else: images, articles, shopping lists, or some other covertext and,
classically, the hidden message may be in invisible ink between the visible lines of a private letter.
The advantage of steganography, over cryptography alone, is that messages do not attract
attention to themselves. Plainly visible encrypted messages-no matter how unbreakable-will
arouse suspicion, and may in themselves be incriminating in countries where encryption is illegal.
Therefore, whereas cryptography protects the contents of a message, steganography can be said
to protect both messages and communicating parties.
Steganography includes the concealment of information within computer files. In digital
steganography, electronic communications may include steganographic coding inside of a
transport layer, such as a document file, image file, program or protocol. Media files are ideal for
steganographic transmission because of their large size. As a simple example, a sender might start with an innocuous image file and adjust the color of every 100th pixel to correspond to a letter in the alphabet, a change so subtle that someone not specifically looking for it is unlikely to notice it.
Concealing Concealment (also called abscondence or hiding) is obscuring something from view or rendering it inconspicuous, the opposite of exposure. A military term is CCD: camouflage (object looks like its surroundings), concealment (object cannot be seen), and deception (object looks like something else); in a broad sense, all three are forms of concealment. The objective of hiding is often to keep the presence of an object or person secret, but in other cases not the presence is a secret, but only the location.
The following reference(s) were/was used to create this question: Ethical Hacking Countermeasures v6.1 Ethical Hacking Countermeasures v7.0 Introduction to Ethical hacking http://en.wikipedia.org/wiki/Tunneling_protocol http://en.wikipedia.org/wiki/Steganography http://en.wikipedia.org/wiki/Piggybacking_%28security%29