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NEW QUESTION: 1
ホットスポット
会社がAzure App Service Webアプリをデプロイします。
テスト中、アプリケーションは負荷がかかると失敗します。アプリケーションは、100を超える同時ユーザーセッションを処理できません。常にオン機能を有効にします。また、自動スケーリングを構成して、カウントを2から
HTTPキューの長さに基づいて10。
アプリケーションのパフォーマンスを改善する必要があります。
各アプリケーションシナリオでどのソリューションを使用する必要がありますか?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:それぞれの正しい選択は1ポイントの価値があります。
Answer:
Explanation:
Explanation
Box 1: Content Delivery Network
A content delivery network (CDN) is a distributed network of servers that can efficiently deliver web content to users. CDNs store cached content on edge servers in point-of-presence (POP) locations that are close to end users, to minimize latency.
Azure Content Delivery Network (CDN) offers developers a global solution for rapidly delivering high-bandwidth content to users by caching their content at strategically placed physical nodes across the world. Azure CDN can also accelerate dynamic content, which cannot be cached, by leveraging various network optimizations using CDN POPs. For example, route optimization to bypass Border Gateway Protocol (BGP).
Box 2: Azure Redis Cache
Azure Cache for Redis is based on the popular software Redis. It is typically used as a cache to improve the performance and scalability of systems that rely heavily on backend data-stores. Performance is improved by temporarily copying frequently accessed data to fast storage located close to the application. With Azure Cache for Redis, this fast storage is located in-memory with Azure Cache for Redis instead of being loaded from disk by a database.
References:
https://docs.microsoft.com/en-us/azure/azure-cache-for-redis/cache-overview
NEW QUESTION: 2
A user has created a VPC with CIDR 20.0.0.0/16 using the wizard. The user has created a public subnet
CIDR (20.0.0.0/24) and VPN only subnets CIDR (20.0.1.0/24) along with the VPN gateway (vgw-12345)
to connect to the user's data centre. The user's data centre has CIDR 172.28.0.0/12. The user has also
setup a NAT instance (i-123456) to allow traffic to the internet from the VPN subnet. Which of the below
mentioned options is not a valid entry for the main route table in this scenario?
A. Destination: 20.0.1.0/24 and Target: i-12345
B. Destination: 0.0.0.0/0 and Target: i-12345
C. Destination: 172.28.0.0/12 and Target: vgw-12345
D. Destination: 20.0.0.0/16 and Target: local
Answer: A
Explanation:
The user can create subnets as per the requirement within a VPC. If the user wants to connect VPC from
his own data centre, he can setup a public and VPN only subnet which uses hardware VPN access to
connect with his data centre. When the user has configured this setup with Wizard, it will create a virtual
private gateway to route all traffic of the VPN subnet. If the user has setup a NAT instance to route all the
internet requests then all requests to the internet should be routed to it. All requests to the organization's
DC will be routed to the VPN gateway. Here are the valid entries for the main route table in this scenario:
Destination: 0.0.0.0/0 & Target: i-12345 (To route all internet traffic to the NAT Instance)
Destination: 172.28.0.0/12 & Target: vgw-12345 (To route all the organization's data centre traffic to the
VPN gateway)
Destination: 20.0.0.0/16 & Target: local (To allow local routing in VPC)
Reference: http://docs.aws.amazon.com/AmazonVPC/latest/UserGuide/VPC_Scenario3.html
NEW QUESTION: 3
What dollar amount of savings would a project show if it reduced your outstanding Accounts Receivable by $1.4 million dollars to $5.3 million total and your organization's marginal cost of capital was 6.2%?
A. $328,600
B. $43,400
C. $117,500
D. $86,800
Answer: D
NEW QUESTION: 4
Of the following, which multiple access method for computer networks does 802.11 Wireless Local Area Network use?
A. CSMA/CD
B. 802.11 RTS/CTS Exchange
C. 802.11 Doesn't support multiple access methods
D. CSMA/CA
Answer: D
Explanation:
Back in the time when network hubs were commonly used in networks all sent packets were received by all stations but only the intended destination MAC address was supposed to listen. (Sniffers respond to all destination MAC addresses and can save those packets for examination.) Hub did not provide for any security or privacy.
Hub networks turned out not to be scalable because of the high amount of frame collisions on the network as the number of nodes and the amount of traffic would increase. Collisions are where two stations speak on the wire at the same time and both frames being sent are damaged and must be re-transmitted.
Wireless networks are like hub networks because all stations "see" all traffic sent on the wire. This situation is mitigated by the CSMA/CA access method. With CSMA/CA the node wishing to send listens to the network to see if anybody is transmitting and if they are they will wait. Otherwise they send their traffic.
CSMA/CA (Carrier Sense Multiple Access/Collision Avoidance) is a protocol for carrier transmission in 802.11 networks. Unlike CSMA/CD (Carrier Sense Multiple Access/Collision Detect) which deals with transmissions after a collision has occurred, CSMA/CA acts to prevent collisions before they happen.
In CSMA/CA, as soon as a node receives a packet that is to be sent, it checks to be sure the channel is clear (no other node is transmitting at the time). If the channel is clear, then the packet is sent. If the channel is not clear, the node waits for a randomly chosen period of time, and then checks again to see if the channel is clear. This period of time is called the backoff factor, and is counted down by a backoff counter. If the channel is clear when the backoff counter reaches zero, the node transmits the packet. If the channel is not clear when the backoff counter reaches zero, the backoff factor is set again, and the process is repeated.
The following answers are incorrect: CSMA/CD: CSMA/CD doesn't support wireless networks well due to the problem of latency and "hidden nodes" are not visible to other nodes but are visible to the AP - Access Point. This means that Collision Detection won't work because control frames won't be received. This is used only on wired networks.
Carrier Sense Multiple Access/Collision Detect (CSMA/CD) is the protocol for carrier transmission access in Ethernet networks. On Ethernet, any device can try to send a frame at any time. Each device senses whether the line is idle and therefore available to be used. If it is, the device begins to transmit its first frame. If another device has tried to send at the same time, a collision is said to occur and the frames are discarded. Each device then waits a random amount of time and retries until successful in getting its transmission sent. CSMA/CD is specified in the IEEE 802.3 standard.
802.11 Doesn't support multiple access methods: This isn't correct. 802.11 wireless supports multiple access to the wireless medium using CSMA/CA.
802.11 RTS/CTS Exchange: This isn't an access control method, rather they're supplemental packets to CSMA/CA where nodes request to send (RTS) clear to send (CTS) Packets exchanged by nodes to enhance signaling.
The following reference(s) were/was used to create this question:
CEH - Certified Ethical Hacker: Sybex, Kimberly Graves - Wiley Publishing, INC 2010
