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NEW QUESTION: 1
A company uses a third-party application to store encrypted data in Amazon S3. The company uses another third-party application trial decrypts the data from Amazon S3 to ensure separation of duties Between the applications A Security Engineer warns to separate the permissions using IAM roles attached to Amazon EC2 instances. The company prefers to use native AWS services.
Which encryption method will meet these requirements?
A. Use server-side encryption with Amazon S3 managed keys (SSE-S3)
B. Use server-side encryption with customer-provided keys (SSE-C)
C. Use encrypted Amazon EBS volumes with Amazon default keys (AWS EBS)
D. Use server-side encryption with AWS KMS managed keys (SSE-KMS)
Answer: D

NEW QUESTION: 2
Service Busキューに含まれるメッセージの数に基づいてスケーリングするバックエンドAzure App Serviceを開発しています。
未処理の有効なキューメッセージの平均キュー長が1000を超える場合、App Serviceをスケールアップするルールが既に存在します。
スケールアップ条件が満たされない限り、App Serviceを継続的にスケールダウンする新しいルールを追加する必要があります。
スケールルールをどのように構成する必要がありますか?回答するには、回答エリアで適切なオプションを選択します。
注:各正しい選択には1ポイントの価値があります。

Answer:
Explanation:

Explanation




NEW QUESTION: 3
회사는 기본 ACL 설정으로 생성 된 프라이빗 VPC 서브넷에서 실행되는 Amazon RDS MySQL DB 인스턴스에 연결하는 널리 사용되는 웹 애플리케이션을 호스팅합니다. IT 보안 부서는 의심스러운 IP에서 DDos 공격이 발생했다는 의혹을 가지고 있습니다. 이 공격으로부터 서브넷을 어떻게 보호 할 수 있습니까?
선택 해주세요:
A. 의심스러운 IP의 액세스를 거부하도록 아웃 바운드 보안 그룹 변경
B. 의심스러운 IP의 액세스를 거부하도록 인바운드 보안 그룹 변경
C. 의심스러운 IP의 액세스를 거부하도록 인바운드 NACL을 변경하십시오.
D. 의심스러운 IP의 액세스를 거부하도록 아웃 바운드 NACL을 변경하십시오.
Answer: C
Explanation:
설명
보안 그룹이 기본적으로 이미 트래픽을 차단하기 때문에 옵션 A와 B는 유효하지 않습니다. NACL을 서브넷의 추가 보안 계층으로 사용하여 트래픽을 거부 할 수 있습니다.
인바운드 규칙을 변경하는 것만으로 충분하므로 옵션 D는 유효하지 않습니다. AWS 설명서에는 다음과 같은 네트워크 액세스 제어 목록이 언급되어 있습니다 (ACLJ는 하나 이상의 서브넷으로 들어오고 나가는 트래픽을 제어하기위한 방화벽 역할을 하는 VPC의 선택적 보안 계층입니다). VPC에 추가 보안 계층을 추가하기 위해 보안 그룹과 유사한 규칙으로 네트워크 ACL을 설정할 수 있습니다.
정답은 다음과 같습니다. 의심스러운 IP의 액세스를 거부하도록 인바운드 NACL을 변경하십시오.

NEW QUESTION: 4
Which 4 statements regarding MPLS Label Stack Encoding is true?
A. A value of 1 represents the "Router Alert Label".
B. A value of 4 represents the "Implicit NULL Label."
C. A value of 0 represents the "IPv4 Explicit NULL Label."
D. A value of 2 represents the "IPv6 Explicit NULL Label"
E. A value of 1 represents the "IPv1 Explicit NULL Label"
F. A value of 3 represents the "Implicit NULL Labe
Answer: A,C,D,F
Explanation:
A value of 0 represents the "IPv4 Explicit NULL Label". This label indicates that the label stack must be popped, and the packet forwarding must be based on the IPv4 header. This helps to keep Exp bits safe until the egress router. It is used in MPLS based QoS. A value of 1 represents the "Router Alert Label". When a received packet contains this label value at the top of the label stack, it is delivered to a local software module for processing. The
actual packet forwarding is determined by the label beneath it in the stack. However, if the packet is forwarded further, the Router Alert Label should be pushed back onto the label stack before forwarding. The use of this label is analogous to the use of the "Router Alert Option" in IP packets (for example, ping with record route option) A value of 2 represents the "IPv6 Explicit NULL Label". It indicates that the label stack must be popped, and the packet forwarding must be based on the IPv6 header. A value of 3 represents the "Implicit NULL Label". This is a label that an LSR can assign and distribute. However, it never actually appears in the encapsulation. It indicates that the LSR pops the top label from the stack and forwards the rest of the packet (labeled or unlabeled) through the outgoing interface (as per the entry in Lfib). Although this value might never appear in the encapsulation, it needs to be specified in the Label Distribution Protocol, so a value is reserved.