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NEW QUESTION: 1
A company manages an on-premises data ingestion application that receives metrics from loT devices in JSON format. The data is collected transformed and stored m a data warehouse for analysis The current infrastructure has severe performance issues at peak loads due to insufficient compute capacity causing some of the data ingestion to be dropped The company wants to migrate the application to AWS The solution must support its current analytics tool that connects to the data warehouse with a Java Database Connectivity (JDBC) driver. The company requires a resilient and cost-effective solution that will address the performance issues Which solution will meet these requirements?
A. Replatform the application Use Amazon API Gateway to handle data ingestion Use AWS Lambda to transform the data Create an Amazon Aurora PostgreSQL DB cluster with an Aurora Replica in two private subnets to store data Use Amazon QuickSight to generate reports and visualize data
B. Re-architect the application Load the data into Amazon S3 Use AWS Glue to transform me data Store the table schema in an AWS Glue Data Catalog Use Amazon Athena to query the data
C. Replatform the application Create an Application Load Balancer and an Amazon EC2 instance with Auto Scaling to host the application to ingest and transform the data Create an Amazon RDS PostgreSQL Multi-AZ DB instance in a private subnet to store data Use Amazon QuickSight to generate reports and visualize data
D. Re-architect the application Load the data into Amazon S3 Use Amazon EMR to transform tne data Create an external schema in an AWS Glue Data Catalog Use Amazon Redshift Spectrum to query the data
Answer: C
NEW QUESTION: 2
How can you show that a session is actually reaching the Avaya Aura® Media Server (AAMS)?
A. From Avaya Aura® System Manager (SMGR) home page, click on the Media Server, and click on the link: list active sessions.
B. In AAMS Element Manager select Monitoring > Active Sessions.
C. In AAMS Element Manager, Select System Status > Element Status > More Actions > display active sessions.
D. From SSH, go to the AAMS and issue the list active sessions current.command.
Answer: B
NEW QUESTION: 3
Your company has a main office and a branch office. The company has a single-domain Active Directory forest. The main office has two domain controllers named DC1 and DC2 that run Windows Server 2008 R2. The branch office has a Windows Server 2008 R2 read-only domain controller (RODC) named DC3.
All domain controllers hold the DNS Server role and are configured as Active Directory-integrated zones. The DNS zones only allow secure updates.
You need to enable dynamic DNS updates on DC3.
What should you do?
A. Run the Dnscmd.exe /ZoneResetType command on DC3.
B. Create a custom application directory partition on DC1. Configure the partition to store Active Directoryintegrated zones.
C. Reinstall Active Directory Domain Services on DC3 as a writable domain controller.
D. Run the Ntdsutil.exe > DS Behavior commands on DC3.
Answer: C
Explanation:
Reinstall Active Directory Domain Services on DC3 as a writable domain controller.
http://technet.microsoft.com/en-us/library/cc754218%28WS.10%29.aspx#BKMK_DDNS Appendix A: RODC Technical Reference Topics DNS updates for clients that are located in an RODC site When a client attempts a dynamic update, it sends a start of authority (SOA) query to its preferred Domain Name System (DNS) server. Typically, clients are configured to use the DNS server in their branch site as their preferred DNS server. The RODC does not hold a writeable copy of the DNS zone. Therefore, when it is queried for the SOA record, it returns the name of a writable domain controller that runs Windows Server 2008 or later and hosts the Active Directory-integrated zone, just as a secondary DNS server handles updates for zones that are not Active Directory-integrated zones. After it receives the name of a writable domain controller that runs Windows Server 2008 or later, the client is then responsible for performing the DNS record registration against the writeable server. The RODC waits a certain amount of time, as explained below, and then it attempts to replicate the updated DNS object in Active Directory Domain Services (AD DS) from the DNS server that it referred the client to through an RSO operation. Note: For the DNS server on the RODC to perform an RSO operation of the DNS record update, a DNS server that runs Windows Server 2008 or later must host writeable copies of the zone that contains the record. That DNS server must register a name server (NS) resource record for the zone. The Windows Server 2003 Branch Office Guide recommended restricting name server (NS) resource record registration to a subset of the available DNS servers. If you followed those guidelines and you do not register at least one writable DNS server that runs Windows Server 2008 or later as a name server for the zone, the DNS server on the RODC attempts to perform the RSO operation with a DNS server that runs Windows Server 2003. That operation fails and generates a 4015 Error in the DNS event log of the RODC, and replication of the DNS record update will be delayed until the next scheduled replication cycle. Further information: http://technet.microsoft.com/en-us/library/dd737255%28v=ws.10%29.aspx Plan DNS Servers for Branch Office Environments This topic describes best practices for installing Domain Name System (DNS) servers to support Active Directory Domain Services (AD DS) in branch office environments. As a best practice, use Active Directory-integrated DNS zones, which are hosted in the application directory partitions named ForestDNSZones and DomainDNSZones. The following guidelines are based on the assumption that you are following this best practice.
In branch offices that have a read-only domain controller (RODC), install a DNS server on each RODC so that client computers in the branch office can still perform DNS lookups when the wide area network (WAN) link to a DNS server in a hub site is not available. The best practice is to install the DNS server when you install AD DS, using Dcpromo.exe. Otherwise, you must use Dnscmd.exe to enlist the RODC in the DNS application directory partitions that host Active Directory-integrated DNS zones. Note: You also have to configure the DNS client's setting for the RODC so that it points to itself as its preferred DNS server. To facilitate dynamic updates for DNS clients in branch offices that have an RODC, you should have at least one writeable Windows Server 2008 DNS server that hosts the corresponding DNS zone for which client computers in the branch office are attempting to make DNS updates. The writeable Windows Server 2008 DNS server must register name server (NS) resource records for that zone. By having the writeable Windows Server 2008 DNS server host the corresponding zone, client computers that are in branch offices that are serviced by RODCs can make dynamic updates more efficiently. This is because the updates replicate back to the RODCs in their respective branch offices by means of a replicate-singleobject (RSO) operation, rather than waiting for the next scheduled replication cycle.
For example, suppose that you add a new member server in a branch office, Branch1, which includes an RODC. The member server hosts an application that you want client computers in Branch1 to locate by using a DNS query. When the member server attempts to register its host (A or AAAA) resource records for its IP address to a DNS zone, it performs a dynamic update on a writeable Windows Server 2008 or Windows Server 2008 R2 DNS server that the RODC tracks in Branch1. If a writeable Windows Server 2008 DNS server hosts the DNS zone, the RODC in Branch1 replicates the updated zone information as soon as possible from the writeable Windows Server 2008 DNS server. Then, client computers in Branch1 can successfully locate the new member server by querying the RODC in Branch1 for its IP address. If you do not have a writeable Windows Server 2008 DNS server that hosts the DNS zone, the update can still succeed against Windows Server 2003 DNS server if one is available but the updated record in the DNS zone will not replicate to the RODC in Branch1 until the next scheduled replication cycle, which can delay client computers that use the RODC DNS server for name resolution from locating the new member server.