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ある会社が、アジアおよび南アメリカのオーディエンスを対象とした新しいバージョンのWebサイトをリリースしました。ウェブサイトのメディア資産はAmazon S3でホストされ、エンドユーザーのパフォーマンスを改善するためにAmazon CloudFrontディストリビューションを持っています。ただし、ユーザーのログインエクスペリエンスが悪い場合、認証サービスはus-east-1 AWSリージョンでのみ利用できます。
A. 各地域でセットアップを複製し、ネットワークロードバランサーを使用して、ユーザーに最も近い地域で実行されている認証サービスにトラフィックをルーティングします。
B. 新しい地域ごとにセットアップを複製し、Amazon Route 53地理ベースルーティングを使用して、ユーザーに最も近いAWSリージョンにトラフィックをルーティングします。
C. Amazon Route 53重み付けルーティングポリシーを使用して、CloudFrontディストリビューションにトラフィックをルーティングします。 CloudFrontのキャッシュされたHTTPメソッドを使用して、ユーザーのログインエクスペリエンスを改善します。
D. CloudFrontビューアーリクエストトリガーにアタッチされたAmazon Lambda @ Edgeを使用して、セッションの有効期限で安全なCookieトークンを維持することでユーザーを認証および承認し、複数の地域でのユーザーエクスペリエンスを向上させます
Answer: D
There are several benefits to using Lambda@Edge for authorization operations. First, performance is improved by running the authorization function using Lambda@Edge closest to the viewer, reducing latency and response time to the viewer request. The load on your origin servers is also reduced by offloading CPU-intensive operations such as verification of JSON Web Token (JWT) signatures. Finally, there are security benefits such as filtering out unauthorized requests before they reach your origin infrastructure. https://aws.amazon.com/blogs/networking-and-content-delivery/authorizationedge-how-to-use-lambdaedge-and-json-web-tokens-to-enhance-web-application-security/

Which of the following BEST explains why computerized information systems frequently fail to meet the needs of users?
A. Inadequate user participation in defining the system's requirements.
B. Constantly changing user needs.
C. Inadequate project management.
D. Inadequate quality assurance (QA) tools.
Answer: A
Inadequate user participation in defining the system's requirements. Most projects fail to meet the needs of the users because there was inadequate input in the initial steps of the project from the user community and what their needs really are.
The other answers, while potentially valid, are incorrect because they do not represent the most common problem assosciated with information systems failing to meet the needs of users.
References: All in One pg 834
Only users can define what their needs are and, therefore, what the system should accomplish. Lack of adequate user involvement, especially in the systems requirements phase, will usually result in a system that doesn't fully or adequately address the needs of the user.
Source: Information Systems Audit and Control Association, Certified Information Systems Auditor 2002 review manual, chapter 6: Business Application System Development, Acquisition, Implementation and Maintenance (page 296).

You are in charge of setting up a new division of your company in Microsoft Dynamics 365 for Talent.
Your manager tells you to include Job types when creating jobs in order to manage other features of the system.
Which area of Dynamics 365 for Talent requires Job types in order to be fully functional?
A. Eligibility for benefits
B. Leave and Absence management rules
C. Compliance management
D. Compensation management
Answer: D



classification and markind: ACLs
congestion avoidance: WRED
traffic conditioners: CAR
congestion management: LLQ
link efficiency: LFI
Classication is the process of partitioning traffic into multiple priority levels or classes of service. Information in the frame or packet header is inspected, and the frame's priority is determined.Marking is the process of changing the priority or class of service (CoS) setting within a frame or packet to indicate its classication. Classication is usually performed with access control lists (ACL), QoS class maps, or route maps, using various match criteria.
Congestion-avoidance techniques monitor network trafc loads so that congestion can be anticipated and avoided before it becomes problematic. Congestion-avoidance techniques allow packets from streams identied as being eligible for early discard (those with lower priority) to be dropped when the queue is getting full. Congestion avoidance techniques provide preferential treatment for high priority trafc under congestion situations while maximizing network throughput and capacity utilization and minimizing packet loss and delay.
Weighted random early detection (WRED) is the Cisco implementation of the random early detection (RED) mechanism. WRED extends RED by using the IP Precedence bits in the IP packet header to determine which traffic should be dropped; the drop-selection process is weighted by the IP precedence.
Traffic conditioner consists of policing and shaping. Policing either discards the packet or modies some aspect of it, such as its IP Precedence or CoS bits, when the policing agent determines that the packet meets a given criterion. In comparison, traffic shaping attempts to adjust the transmission rate of packets that match a certain criterion. Shaper typically delays excess trafc by using a buffer or queuing mechanism to hold packets and shape the ow when the source's data rate is higher than expected. For example, generic traffic shaping uses a weighted fair queue to delay packets to shape the ow. Traffic conditioner is also referred to as Committed Access Rate (CAR).
Congestion management includes two separate processes: queuing, which separates traffic into various queues or buffers, and scheduling, which decides from which queue trafc is to be sent next. There are two types of queues: the hardware queue (also called the transmit queue or TxQ) and software queues. Software queues schedule packets into the hardware queue based on the QoS requirements and include the following types: weighted fair queuing (WFQ), priority queuing (PQ), custom queuing (CQ), class-based WFQ (CBWFQ), and low latency queuing (LLQ).
LLQ is also known as Priority Queuing-Class-Based Weighted Fair Queuing (PQ-CBWFQ). LLQ provides a single priority but it's preferred for VoIP networks because it can also congure guaranteed bandwidth for different classes of traffic queue. For example, all voice call traffic would be assigned to the priority queue, VoIP signaling and video would be assigned to a traffic class, FTP traffic would be assigned to a low-priority traffic class, and all other traffic would be assigned to a regular class.
Link efficiency techniques, including link fragmentation and interleaving (LFI) and compression. LFI prevents small voice packets from being queued behind large data packets, which could lead to unacceptable delays on low-speed links. With LFI, the voice gateway fragments large packets into smaller equal-sized frames and interleaves them with small voice packets so that a voice packet does not have to wait until the entire large data packet is sent. LFI reduces and ensures a more predictable voice delay.
(Reference: Cisco Press Designing for Cisco Internetwork Solutions)