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NEW QUESTION: 1
In which of the following WAN message transmission technique messages are divided into packets before they are sent and each packet is then transmitted individually and can even follow different routes to its destination?
A. Message Switching
B. Packet switching
C. Circuit switching
D. Virtual Circuits
Answer: B
Explanation:
Explanation/Reference:
For your exam you should know below information about WAN message transmission technique:
Message Switching
Message switching is a network switching technique in which data is routed in its entirety from the source node to the destination node, one hope at a time. During message routing, every intermediate switch in the network stores the whole message. If the entire network's resources are engaged or the network becomes blocked, the message-switched network stores and delays the message until ample resources become available for effective transmission of the message.
Message Switching

Image from: http://ecomputernotes.com/images/Message-Switched-data-Network.jpg Packet Switching
Refers to protocols in which messages are divided into packets before they are sent. Each packet is then transmitted individually and can even follow different routes to its destination. Once all the packets forming a message arrive at the destination, they are recompiled into the original message.
Packet Switching

Image from: http://upload.wikimedia.org/wikipedia/commons/f/f6/Packet_Switching.gif Circuit Switching
Circuit switching is a methodology of implementing a telecommunications network in which two network nodes establish a dedicated communications channel (circuit) through the network before the nodes may communicate.
The circuit guarantees the full bandwidth of the channel and remains connected for the duration of the session. The circuit functions as if the nodes were physically connected similar to an electrical circuit.
The defining example of a circuit-switched network is the early analog telephone network. When a call is made from one telephone to another, switches within the telephone exchanges create a continuous wire circuit between the two telephones, for as long as the call lasts.
In circuit switching, the bit delay is constant during a connection, as opposed to packet switching, where packet queues may cause varying and potentially indefinitely long packet transfer delays. No circuit can be degraded by competing users because it is protected from use by other callers until the circuit is released and a new connection is set up. Even if no actual communication is taking place, the channel remains reserved and protected from competing users.
Circuit Switching

Image from: http://www.louiewong.com/wp-content/uploads/2010/09/Circuit_Switching.jpg See a table below comparing Circuit Switched versus Packet Switched networks:
Difference between Circuit and packet switching

Image from:http://www.hardware-one.com/reviews/network-guide-2/images/packet-vs-circuit.gif Virtual circuit
In telecommunications and computer networks, a virtual circuit (VC), synonymous with virtual connection and virtual channel, is a connection oriented communication service that is delivered by means of packet mode communication.
After a connection or virtual circuit is established between two nodes or application processes, a bit stream or byte stream may be delivered between the nodes; a virtual circuit protocol allows higher level protocols to avoid dealing with the division of data into segments, packets, or frames.
Virtual circuit communication resembles circuit switching, since both are connection oriented, meaning that in both cases data is delivered in correct order, and signaling overhead is required during a connection establishment phase. However, circuit switching provides constant bit rate and latency, while these may vary in a virtual circuit service due to factors such as:
varying packet queue lengths in the network nodes,
varying bit rate generated by the application,
varying load from other users sharing the same network resources by means of statistical multiplexing, etc.
The following were incorrect answers:
The other options presented are not valid choices.
The following reference(s) were/was used to create this question:
CISA review manual 2014 Page number 265

NEW QUESTION: 2
회사는 Amazon API Gateway를 사용하여 AWS에서 블로그 게시물 애플리케이션을 호스팅합니다. Amazon DynampDB 및 AWS Lambda. 애플리케이션은 현재 요청을 승인하기 위해 API 키를 사용하지 않습니다. API 모델은 다음과 같습니다.
GET / posts / [postid] 게시물 세부 정보 가져 오기
사용자 정보를 얻기위한 GET / 사용자
댓글 정보를 얻으려면 / comments / [commentid]를 얻습니다.
회사는 의견 섹션에서 주제를 적극적으로 논의하고 있음을 확인했으며 회사는 실시간으로 의견을 표시하여 사용 참여를 늘리려 고합니다.
주석 대기 시간을 줄이고 사용자 경험을 향상시키기 위해 어떤 디자인을 사용해야 합니까?
A. Lambda 함수의 동시성 제한을 변경하여 API 응답 시간을 줄입니다.
B. 블로그 애플리케이션 코드를 수정하여 10 초마다 GET 주석 [commentid [을 요청하십시오.
C. AWS AppSync 사용 및 WebSockts를 활용하여 의견 제공
D. Amazon CloudFront와 adge-optimized API를 사용하여 API 응답을 캐시하십시오.
Answer: A

NEW QUESTION: 3
What happens when you attempt to compile and run the following code?
# include <iostream>
# include <map>
using namespace std;
int main() {
int t[] = { 1, 1, 2, 2, 3, 3, 4, 4, 5, 5 };
string s[] = { "one", "one", "two", "two", "three","three", "four", "four", "five", "five"}; multimap<int, string> m;
for (int i = 0; i < 10; i++) {
m.push_back(pair<int, string>(t[i], s[i]));
}
for (multimap<int, string>::iterator i = m.begin(); i != m.end(); i++) { cout << i?>first << " ";
}
return 0;
}
A. program outputs: 1 2 3 4 5
B. program outputs: one two three four five
C. compilation error
D. program outputs: 1 1 2 2 3 3 4 4 5 5
E. program outputs: one one two two three three four four five five
Answer: C

NEW QUESTION: 4
How does a device on a network using ISE receive its digital certificate during the new- device registration process?
A. ISE acts as a SCEP proxy to enable the device to receive a certificate from a central CA server.
B. ISE issues a pre-defined certificate from a local database.
C. ISE issues a certificate from its internal CA server.
D. The device requests a new certificate directly from a central CA.
Answer: A
Explanation:
SCEP Profile Configuration on ISE
Within this design, ISE is acting as a Simple Certificate Enrollment Protocol (SCEP) proxy server, thereby allowing mobile clients to obtain their digital certificates from the CA server.
This important feature of ISE allows all endpoints, such as iOS, Android, Windows, and MAC, to obtain digital certificates through the ISE. This feature combined with the initial registration process greatly simplifies the provisioning of digital certificates on endpoints.
Source:
http://www.cisco.com/c/en/us/td/docs/solutions/Enterprise/Borderless_Networks/Unified_Ac cess/ BYOD_Design_Guide/BYOD_ISE.html