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NEW QUESTION: 1
You have a DNS server named Server1.
Server1 has a primary zone named contoso.com.
Zone Aging/Scavenging is configured for the contoso.com zone.
One month ago, an administrator removed a server named Server2 from the network.
You discover that a static resource record for Server2 is present in contoso.com. Resource records for decommissioned client computers are removed automatically from contoso.com.
You need to ensure that the static resource records for all of the servers are removed automatically from contoso.com.
What should you modify?
A. The Security settings of the static resource records
B. The time-to-live (TTL) value of the static resource records
C. The Record time stamp value of the static resource records
D. The Expires after value of contoso.com
Answer: C
Explanation:
Explanation/Reference:
Explanation:
Reset and permit them to use a current (non-zero) time stamp value. This enables these records to become aged and scavenged.
You can use this procedure to change how a specific resource record is scavenged.
A stale record is a record where both the No-Refresh Interval and Refresh Interval have passed without the time stamp updating.
DNS->View->Advanced

Depending on the how the resource record was originally added to the zone, do one of the following:
If the record was added dynamically using dynamic update, clear the Delete this record when it

becomes stale check box to prevent its aging or potential removal during the scavenging process. If dynamic updates to this record continue to occur, the Domain Name System (DNS) server will always reset this check box so that the dynamically updated record can be deleted.
If you added the record statically, select the Delete this record when it becomes stale check box to

permit its aging or potential removal during the scavenging process.

Typically, stale DNS records occur when a computer is permanently removed from the network. Mobile users who abnormally disconnect from the network can also cause stale DNS records. To help manage stale records, Windows adds a time stamp to dynamically added resource records in primary zones where aging and scavenging are enabled. Manually added records are time stamped with a value of 0, and they are automatically excluded from the aging and scavenging process.
To enable aging and scavenging, you must do the following:
Resource records must be either dynamically added to zones or manually modified to be used in aging

and scavenging operations.
Scavenging and aging must be enabled both at the DNS server and on the zone.

Scavenging is disabled by default.

DNS scavenging depends on the following two settings:
No-refresh interval: The time between the most recent refresh of a record time stamp and the moment

when the time stamp can be refreshed again. When scavenging is enabled, this is set to 7 days by default.
Refresh interval: The time between the earliest moment when a record time stamp can be refreshed

and the earliest moment when the record can be scavenged. The refresh interval must be longer than the maximum record refresh period. When scavenging is enabled, this is set to 7 days by default.
A DNS record becomes eligible for scavenging after both the no-refresh and refresh intervals have elapsed. If the default values are used, this is a total of 14 days.
References:
http://technet.microsoft.com/en-us/library/cc759204%28v=ws.10%29.aspx
http://technet.microsoft.com/en-us/library/cc771570.aspx
http://technet.microsoft.com/en-us/library/cc771677.aspx
http://technet.microsoft.com/en-us/library/cc758321(v=ws.10).aspx

NEW QUESTION: 2
An application runs on Amazon EC2 instances behind an Application Load Balancer. Amazon RDS MySOL is used on the backend. The instances run in an Auto Scaling group across multiple Availability Zones. The Application Load Balancer health check ensures the web servers are operating and able to make read/write SQL connections. Amazon Route 53 provides DNS functionality with a record pointing to the Application Load Balancer. A new policy requires a geographically isolated disaster recovery site with an RTO of 4 hours and an RPO of 15 minutes.
Which disaster recovery strategy will require the LEAST amount of changes to the application stack?
A. Launch a replica stack of everything except RDS in a different Availability Zone. Create an RDS read- only replica in a new Availability Zone and configure the new stack to point to the local RDS instance.
Add the new stack to the Route 53 record set with a failover routing policy.
B. Launch a replica stack of everything except RDS in a different region. Create an RDS read-only replica in a new region and configure the new stack to point to the local RDS instance. Add the new stack to the Amazon Route 53 record set with a failover routing policy.
C. Launch a replica stack of everything except RDS in a different region. Upon failure, copy the snapshot over from the primary region to the disaster recovery region. Adjust the Amazon Route 53 record set to point to the disaster recovery region's Application Load Balancer.
D. Launch a replica stack of everything except RDS in a different region. Create an RDS read-only replica in a new region and configure the new stack to point to the local RDS instance. Add the new stack to the Route 53 record set with a latency routing policy.
Answer: A

NEW QUESTION: 3
AWS Direct Connectでポリシーキーを実装している間に、Amazon EC2インスタンスからリクエストが送信されてくると、インスタンスのパブリックIPアドレスが評価され、アクセスが許可されているかどうかが判断されます。
A. aws:EpochIP
B. aws:CurrentTime
C. aws:SecureTransport
D. aws:SourceIp
Answer: D
Explanation:
Explanation
While implementing the policy keys in Amazon RDS, if you use aws: SourceIp and the request comes from an Amazon EC2 instance, the instance's public IP address is evaluated to determine if access is allowed.
http://docs.aws.amazon.com/directconnect/latest/UserGuide/using_iam.html

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