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NEW QUESTION: 1
企業はマルチアカウント戦略を実施しています。ただし、管理チームは、DNSなどのサービスが過度に複雑になる可能性があるという懸念を表明しています。会社には、異なるアカウントの仮想プライベートクラウド(VPC)間でプライベートDNSを共有できるソリューションが必要です。会社は合計で約50のアカウントを持ちます。
どのソリューションが最も複雑なDNSアーキテクチャを作成し、各VPCがすべてのAWSリソースを解決できるようにしますか?
A. 中央アカウントで共有サービスVPCを作成します。他のアカウントのVPCから共有サービスVPCへのVPCピアリング接続を作成します。ドメインおよびサブドメインのリソースレコードセットを使用して、共有サービスVPCにAmazon Route 53プライベートホストゾーンを作成します。 VPCピアリング接続でUDPおよびTCPポート53を許可します。
B. 中央アカウントで共有サービスVPCを作成し、共有サービスVPCから他のアカウントの各VPCへのVPCピアリング接続を作成します。 Amazon Route 53内で、共有サービスVPCにプライベートホストゾーンを作成し、ドメインとサブドメインのリソースレコードセットを作成します。
プログラムで他のVPCをホストゾーンに関連付けます。
C. VPC属性enableDnsHostnamesおよびenableDnsSupportをすべてのVPCで「false」に設定します。プライベート仮想インターフェイスを使用してAWS Direct Connect接続を作成します。仮想インターフェイスでUDPおよびTCPポート53を許可します。オンプレミスDNSサーバーを使用して、AWS上の各VPCのIPアドレスを解決します。
D. すべてのアカウントのVPC間にVPCピア接続を作成します。 VPC属性enableDnsHostnamesおよびenableDnsSupportを各VPCに対して「true」に設定します。 VPCごとにAmazon Route 53プライベートゾーンを作成します。ドメインとサブドメインのリソースレコードセットを作成します。
各VPCのホストゾーンを他のVPCとプログラムで関連付けます。
Answer: B
Explanation:
B: enableDnsHostnames: Indicates whether instances with public IP addresses get corresponding public DNS hostnames. If this attribute is true, instances in the VPC get public DNS hostnames, but only if the enableDnsSupport attribute is also set to true. enableDnsSupport:
Indicates whether the DNS resolution is supported. This is not needed.
C: Do it from the central account is less complex and faster.
D: This is not recommended and not the least complex solution. This will be difficult to maintain too. I don't think it's even possible.
NEW QUESTION: 2
The 201.148.26.0/24 network is subnetted using a /26 mask. How many subnets and host addresses will be obtained with this mask?
A. 64 subnets, 4 hosts
B. 6 subnets, 30 hosts
C. 64 subnets, 2 hosts
D. 4 subnets, 64 hosts
E. 4 subnets, 62 hosts
Answer: E
NEW QUESTION: 3
If Erin has three clusters of server types that are all managed by Ansible and she needs to provision each cluster so that they are configured with their appropriate NTP server addresses.
What is the best method Erin should use in Ansible for managing this?
A. Write a task that scans the network in the target hosts' region for the NTP server, register the resulting address so that the next task can write the NTP configuration.
B. Create three plays, each one has the hosts for their respective regions and set the NTP server address in each task.
C. Create a playbook for each different region and store the NTP address in a variable in the play in the event the NTP server changes.
D. Break down the hosts by region in the Ansible inventory file and assign an inventory group variable the NTP address value for the respective region. The playbook can contain just the single play referencing the NTP variable from the inventory.
Answer: D
Explanation:
While all four answers provided are correct, only B is the best choice. Ansible offers the ability to assign variables to groups of hosts in the inventory file. When the playbook is ran it will use the variables assigned to the group, even all the groups are specified in a single playbook run. The respective variables will be available to the play. This is easiest method to run, maintain and write.
Reference: http://docs.ansible.com/ansible/intro_inventory.html#group-variables
NEW QUESTION: 4
次のうち、ピボット攻撃に対する防御ではないものはどれですか?
A. 適切なパッチ管理
B. ネットワークセグメンテーション
C. コンテンツフィルタリング
D. アクセス制御
Answer: C