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NEW QUESTION: 1
What does AMI stand for?
A. Amazon Machine Image
B. Advanced Machine Image
C. Amazon Micro Instance
D. Advanced Machine Instance
Answer: A
Explanation:
Explanation
AMI stands for Amazon Machine Image.
An Amazon Machine Image (AMI) is a template that contains a software configuration (for example, an operating system, an application server, and applications). From an AMI, you launch an instance, which is a copy of the AMI running as a virtual server in the cloud. You can launch multiple instances of an AMI, as shown in the following figure.
References:

NEW QUESTION: 2
Refer to the exhibit.

You must extend Layer 2 services out of the Cisco ACI fabric configuring contracts for the connected devoices. Which options do you extend?
A. EPG out of the ACI fabric
B. VMM out of the ACI fabric
C. bridge domain out of the ACI fabric
D. Layer 2 domain by using remote VTEF
Answer: D

NEW QUESTION: 3
You have an Azure web app named App1 that is configured to run between two and five instances. There are currently three instances of App1 running.
App1 has the following autoscale rules:
* Increase the instance count by one when the CPU percentage is greater or equal to 80.
* Decrease the instance count by one when the CPU percentage is less than or equal to 60.
You are evaluating the following CPU percentage of utilization for App1:
* 60%
* 55%
* 50%
* 45%
You need to identify which utilizations will cause App1 to scale in.
A. 45% only
B. 45% and 50% only
C. 45%, 50%, and 55% only
D. 50% and 55% only
Answer: C
Explanation:
Explanation
Azure Monitor autoscaling allows you to scale the number of running instances up or down, based on telemetry data (metrics). Scale-in occurs when the instances are decrease. For this rule the instances are decreased when the CPU usage is 60% or lower.
References:
https://docs.microsoft.com/en-us/azure/azure-monitor/platform/autoscale-custom-metric
https://docs.microsoft.com/en-us/azure/azure-monitor/platform/autoscale-common-metrics

NEW QUESTION: 4
DRAG DROP
Note: This question is part of a series of questions that use the same scenario. For your convenience, the
scenario is repeated in each question. Each question presents a different goal and answer choices, but the
text of the scenario is exactly the same in each question in this series.
You have five servers that run Microsoft Windows 2012 R2. Each server hosts a Microsoft SQL Server
instance. The topology for the environment is shown in the following diagram.

You have an Always On Availability group named AG1. The details for AG1 are shown in the following
table.

Instance1 experiences heavy read-write traffic. The instance hosts a database named OperationsMain that
is four terabytes (TB) in size. The database has multiple data files and filegroups. One of the filegroups is
read_only and is half of the total database size.
Instance4 and Instance5 are not part of AG1. Instance4 is engaged in heavy read-write I/O.
Instance5 hosts a database named StagedExternal. A nightly BULK INSERT process loads data into an
empty table that has a rowstore clustered index and two nonclustered rowstore indexes.
You must minimize the growth of the StagedExternal database log file during the BULK INSERT
operations and perform point-in-time recovery after the BULK INSERT transaction. Changes made must
not interrupt the log backup chain.
You plan to add a new instance named Instance6 to a datacenter that is geographically distant from Site1
and Site2. You must minimize latency between the nodes in AG1.
All databases use the full recovery model. All backups are written to the network location \\SQLBackup\. A
separate process copies backups to an offsite location. You should minimize both the time required to
restore the databases and the space required to store backups. The recovery point objective (RPO) for
each instance is shown in the following table.

Full backups of OperationsMain take longer than six hours to complete. All SQL Server backups use the
keyword COMPRESSION.
You plan to deploy the following solutions to the environment. The solutions will access a database named
DB1 that is part of AG1.
Reporting system: This solution accesses data inDB1with a login that is mapped to a database user

that is a member of the db_datareader role. The user has EXECUTE permissions on the database.
Queries make no changes to the data. The queries must be load balanced over variable read-only
replicas.
Operations system: This solution accesses data inDB1with a login that is mapped to a database user

that is a member of the db_datareader and db_datawriter roles. The user has EXECUTE permissions
on the database. Queries from the operations system will perform both DDL and DML operations.
The wait statistics monitoring requirements for the instances are described in the following table.

You need to configure a new replica of AG1 on Instance6.
How should you complete the Transact-SQL statement? To answer, drag the appropriate Transact-SQL
statements to the correct locations. Each Transact-SQL segment may be used once, more than once, or
not at all. You may need to drag the split bar between panes or scroll to view content.
Select and Place:

Answer:
Explanation:

Explanation/Reference:
Explanation:
Scenario: You plan to add a new instance named Instance6 to a datacenter that is geographically distant
from Site1 and Site2. You must minimize latency between the nodes in AG1.
Box 1: REPLICA
MODIFY REPLICA ON modifies any of the replicas ofthe availability group.
Box 2: SYNCHRONOUS_COMMIT
You must minimize latency between the nodes in AG1
AVAILABILITY_MODE = { SYNCHRONOUS_COMMIT | ASYNCHRONOUS_COMMIT }
Specifies whether the primary replica has to wait for the secondary availability group to acknowledge the
hardening (writing) of the log records to disk before the primary replica can commit the transaction on a
given primary database.
FAILOVER AUTOMATIC (box 4) requires SYNCHRONOUS_COMMIT
Box 3: REPLICA
MODIFY REPLICA ON modifies any of the replicas of the availability group.
Box 4: AUTOMATIC
You must minimize latency between the nodes in AG1
FAILOVER_MODE = { AUTOMATIC | MANUAL }
Specifies the failover mode of the availability replica that you are defining.
FAILOVER_MODE is required in the ADD REPLICA ON clause and optional in the MODIFY REPLICA ON
clause.
AUTOMATIC enables automatic failover. AUTOMATIC is supported only if you also specify
AVAILABILITY_MODE = SYNCHRONOUS_COMMIT.
Reference: https://docs.microsoft.com/en-us/sql/t-sql/statements/alter-availability-group-transact-sql