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NEW QUESTION: 1
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 analyze the wait type and statistics for specific instanced in the environment.
Which object should you use to gather information about each instance? To answer, drag the appropriate objects to the correct instances. Each object 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.
NOTE: Each correct selection is worth one point.

Answer:
Explanation:

Explanation
Instance 1: sys.dm_exec_query_stats
From Scenario: Instance1 requirement: Aggregate statistics since last server restart.
sys.dm_exec_query_stats returns aggregate performance statistics for cachedquery plans in SQL Server.

Instance 4: sys.dm_os_wait_stats
sys.dm_os_wait_statsreturns information about all the waits encountered by threads that executed.
From Scenario: Instance4 requirement: Identify the most prominent wait types.

Instance 5:sys.dm_exec_session_wait_stats
From Scenario: Instance5 requirement: Identify all wait types for queries currently running on the server.
sys.dm_exec_session_wait_stats returns information about all the waits encountered by threads that executed for each session.

NEW QUESTION: 2
For each of the following statements, select Yes if the statement is true. Otherwise, select No.
NOTE: Each correct selection is worth one point.

Answer:
Explanation:


NEW QUESTION: 3
Which four statements about REP configurations on a Cisco ME 3400 switch port are true? (Choose four.)
A. If a failure occurs within the segment, the blocked port goes to the forwarding state after it goes through the listening state and the learning state.
B. A REP segment cannot be wrapped into a ring topology. REP supports only a topology where each REP segment has two exit points via two edge switches.
C. The port must be an NNI type and must be in trunk mode.
D. With REP, at least one port is always blocked in any given segment-that is, the alternate port.
E. Use the rep segment number command to enable REP on the switch port.
F. The port where the segment terminates is called the edge port.
Answer: C,D,E,F
Explanation:
Explanation/Reference:
http://www.cisco.com/en/US/docs/switches/metro/me3400/software/release/12.2_40_se/configurat
ion/guide/swrep.html
Resilient Ethernet Protocol (REP) on the Cisco ME 3400E Ethernet Access switch. REP is a Cisco
proprietary protocol that provides an alternative to Spanning Tree
Protocol (STP) to control network loops, handle link failures, and improve convergence time. REP
controls a group of ports connected in a segment, ensures that the segment does not create any
bridging loops, and responds to link failures within the segment. REP provides a basis for
constructing more complex networks and supports VLAN load balancing.
REP Configuration Guidelines
Follow these guidelines when configuring REP:
We recommend that you begin by configuring one port and then configure the contiguous ports to minimize the number of segments and the number of blocked ports.
If more than two ports in a segment fail when no external neighbors are configured, one port goes into a forwarding state for the data path to help maintain connectivity during configuration. In the show rep interface privileged EXEC command output, the Port Role for this port shows as Fail Logical Open; the Port Role for the other failed port shows as Fail No Ext Neighbor. When the external neighbors for the failed ports are configured, the ports go through the alternate port state transitions and eventually go to an open state or remain as the alternate port, based on the alternate port election mechanism.
REP ports must be Layer 2 trunk ports.
Be careful when configuring REP through a Telnet connection. Because REP blocks all VLANs
until another
REP interface sends a message to unblock it, you might lose connectivity to the switch if you
enable REP in a Telnet session that accesses the switch through the same interface.
You cannot run REP and STP or REP and Flex Links on the same segment or interface.
If you connect an STP network to the REP segment, be sure that the connection is at the
segment edge. An STP connection that is not at the edge could cause a bridging loop because
STP does not run on REP segments. All STP BPDUs are dropped at REP interfaces.
You must configure all trunk ports in the segment with the same set of allowed VLANs, or a
misconfigurations occurs.If REP is enabled on two ports on a switch, both ports must be either
regular segment ports or edge ports.
REP ports follow these rules:
-If only one port on a switch is configured in a segment, the port should be an edge port.
-If two ports on a switch belong to the same segment, both ports must be edge ports or both ports
must be regular segment ports.
-If two ports on a switch belong to the same segment and one is configured as an edge port and
one as a regular segment port (a misconfiguration), the edge port is treated as a regular segment
port.
REP interfaces come up in a blocked state and remains in a blocked state until notified that it is
safe to unblock. You need to be aware of this to avoid sudden connection losses.
REP sends all LSL PDUs in untagged frames on the native VLAN. The BPA message sent to the
Cisco multicast address is sent on the administration VLAN, which is VLAN 1 by default.
REP ports can not be configured as one of these port types:
-SPAN destination port
-Private VLAN port
-Tunnel port
-Access port
On a Cisco ME-3400 switch, REP ports must be network node interfaces (NNI). User-network
interfaces
(UNIs) cannot be REP ports.
REP is supported on EtherChannels, but not on an individual port that belongs to an
EtherChannel.
There is a maximum of 64 REP segments per switch.

NEW QUESTION: 4
How many bytes of overhead does an IP-IP tunnel add to a packet?
A. 28 bytes
B. 20 bytes
C. 24 bytes
D. 14 bytes
Answer: B
Explanation:
Explanation
Difference Between GRE and IP-IP Tunnel. Generic Routing Encapsulation (GRE) and IP-in-IP (IPIP) are two rather similar tunneling mechanisms which are often confused. In terms of less overhead, the GRE header is
24 bytes and an IP header is 20 bytes.
References: