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NEW QUESTION: 1
2人の異なるユーザーが共通のキーワードを検索しても同じ検索結果が得られますか?
A. はい
B. いいえ
Answer: B

NEW QUESTION: 2
The implementations group has been using the test bed to do a 'proof-of-concept'. After several changes to the network addressing, routing schemes, a trouble ticket has been opened indicating that the loopback address on R1 (2026::111:1) is not able to ping the loopback address on DSW2(2026::102:1).
Use the supported commands to isolated the cause of this fault and answer the following questions.
What is the solution to fault condition?
A. Under the interface Serial0/0/0.12 configuration enter the ipv6 ospf 6 area 12 command.
B. Under ipv6 router ospf 6 configuration enter no passive-interface default command.
C. Under ipv6 router ospf 6 configuration enter the network 2026::1:/122 area 0 command.
D. Under the interface Serial 0/0/0.23 configuration enter the ipv6 ospf 6 area 0 command.
Answer: D
Explanation:
Explanation/Reference:
Explanation:
On R2, IPV6 OSPF routing, configuration is required to add ipv6 ospf 6 area 0 under interface serial
0/0/0.23
Testlet 1
Instructions
The main screen consists of two parts; the Main scenario and the Topology tabs. The main scenario describes TSHOOT.com test bed. The Topology tabs allow you to display the appropriate and select the trouble ticket.
To complete the item, you will first need to familiarize yourself with the TSHOOT.com test bed by clicking on the master scenario first and then the topologies tabs. Once you are familiar with the test bed and the topologies, you should start evaluating the trouble ticket. You will be presented with a Trouble Ticket scenario that will describe the fault condition. You will need to determine on which device the fault condition is located, to which technology the fault condition is related, and the solution to each trouble ticket. This will be done by answering three questions.
Ticket Selection
To begin, click on the Ticket on the Topology tabs.
Professional-Cloud-Architect Dumps
Please note. Some of the questions will require you to use the scroll bar to see all options.
Professional-Cloud-Architect Dumps
Fault Isolation
Read the ticket scenario to understand the fault condition.
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Open the appropriate topology, based upon the ticket scenario.
Professional-Cloud-Architect Dumps
Open the console of the desired device by clicking on that device in the topology, based upon your
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troubleshooting methodology.
Use the supported show, ping and trace commands to begin your fault isolation process.
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Move to other devices as need by clicking on those devices within the topology.
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Fault Identification
The trouble ticket will include three questions that you will need to answer:
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1. Which device contains the fault
2. Which technology the fault condition is related to
3. What is the solution to the issue
To advance to the next question within the ticket click on "Next Question".
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When you click "DONE", the trouble ticket will turn RED and will no longer be accessible.
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You may also use the "Previous Question" button to review questions within that specific ticket.
Professional-Cloud-Architect Dumps
To complete a trouble ticket, answer all three questions and click "DONE". This will store your response
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to the questions. Do not click on "DONE" unless you have answered all questions within the ticket.
Item Completion
Click the NEXT button on the bottom of the screen once a ticket is RED. This action moves you to the
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next item.
Topology Overview (Actual Troubleshooting lab design is for below network design) Client Should have IP 10.2.1.3
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EIGRP 100 is running between switch DSW1 & DSW2
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OSPF (Process ID 1) is running between R1, R2, R3, R4
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Network of OSPF is redistributed in EIGRP
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BGP 65001 is configured on R1 with Webserver cloud AS 65002
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HSRP is running between DSW1 & DSW2 Switches
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The company has created the test bed shown in the layer 2 and layer 3 topology exhibits.
This network consists of four routers, two layer 3 switches and two layer 2 switches.
In the IPv4 layer 3 topology, R1, R2, R3, and R4 are running OSPF with an OSPF process number 1.
DSW1, DSW2 and R4 are running EIGRP with an AS of 10. Redistribution is enabled where necessary.
R1 is running a BGP AS with a number of 65001. This AS has an eBGP connection to AS 65002 in the ISP's network. Because the company's address space is in the private range.
R1 is also providing NAT translations between the inside (10.1.0.0/16 & 10.2.0.0/16) networks and outside (209.65.0.0/24) network.
ASW1 and ASW2 are layer 2 switches.
NTP is enabled on all devices with 209.65.200.226 serving as the master clock source.
The client workstations receive their IP address and default gateway via R4's DHCP server.
The default gateway address of 10.2.1.254 is the IP address of HSRP group 10 which is running on DSW1 and DSW2.
In the IPv6 layer 3 topology R1, R2, and R3 are running OSPFv3 with an OSPF process number 6.
DSW1, DSW2 and R4 are running RIPng process name RIP_ZONE.
The two IPv6 routing domains, OSPF 6 and RIPng are connected via GRE tunnel running over the underlying IPv4 OSPF domain. Redistrution is enabled where necessary.
Recently the implementation group has been using the test bed to do a 'proof-of-concept' on several implementations. This involved changing the configuration on one or more of the devices. You will be presented with a series of trouble tickets related to issues introduced during these configurations.
Note: Although trouble tickets have many similar fault indications, each ticket has its own issue and solution.
Each ticket has 3 sub questions that need to be answered & topology remains same.
Question-1 Fault is found on which device,
Question-2 Fault condition is related to,
Question-3 What exact problem is seen & what needs to be done for solution
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Professional-Cloud-Architect Dumps
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Solution
Steps need to follow as below:-
1. Since the problem is raised that DSW1 will not become active router for HSRP group 10
2. we will check for the HSRP configuration...
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Professional-Cloud-Architect Dumps
Professional-Cloud-Architect Dumps
3. From snapshot we see that the track command given needs to be changed under active VLAN10 router
4. Change Required: On DSW1, related to HSRP, under vlan 10 change the given track 1 command to instead use the track 10 command.

NEW QUESTION: 3
You are installing the Data Quality Server component of Data Quality Services.
You need to provision the hardware and install the software for the server that runs the Data Quality Server.
You must ensure that the minimum Data Quality Server prerequisites are met.
What should you do?
A. Install Microsoft SharePoint Server 2010 Standard Edition.
B. Make sure the server has at least 4 GB of RAM.
C. Install SQL Server 2012 Database Engine.
D. Install Microsoft Internet Explorer 6.0 SP1 or later.
Answer: C
Explanation:
Explanation: Data Quality Server Minimum System Requirements
* SQL Server 2012 Database Engine.
* Memory (RAM):
Minimum: 2 GB
Recommended: 4 GB or more
Note: SQL Server Data Quality Services (DQS) is a new feature in SQL Server 2012 that contains the following two components: Data Quality Server and Data Quality Client.

NEW QUESTION: 4
Which technique does NOT help you get the optimal performance out of the Oracle Cloud Infrastructure (OC1) File Storage service?
A. Limit access to the same Availability Domain (AD) as the File Storage service where possible.
B. Serialize operations to the file system to access consecutive blocks as much as possible.
C. Right size compute instances from where file system is accessed based on their network capacity.
D. Increase concurrency by using multiple threads, multiple clients, and multiple mount targets.
E. Store files across multiple directories in the file system.
Answer: B
Explanation:
Oracle Cloud Infrastructure File Storage is a fully managed file storage service that can be accessed concurrently by thousands of compute instances.
To optimize the performance of File Storage, consider the following guidelines:
- While it is possible to access mount targets from any availability domain in a region, for optimal performance, place File Storage resources in the same availability domain as the Compute instances that access them.
- File Storage performance increases with parallelism. Increase concurrency by using multiple threads, multiple clients, and multiple mount targets. In particular, scalability will be greatest when clients and threads are accessing independent portions of the file system
- Use tools to run file operations in parallel. The File Storage engineering team has developed parallel tar and untar (puntar), parallel copy (parcp), and parallel remove (parrm) tools. These tools are available in the fss-parallel-tools package in Oracle Linux.
- The available bandwidth to a file system can significantly impact its performance. In Oracle Cloud Infrastructure, larger instances (more CPUs) are entitled to more network bandwidth. File Storage performance is best with Oracle bare metal instances or large VM shapes
- To minimize latency, clients, mount targets, and file systems should be in the same availability domain.
- For best performance, don't set any mount options such as rsize or wsize when mounting the file system. In the absence of these options, the system automatically negotiates optimal window sizes.
- Due to the limitations of Oracle Cloud Infrastructure's VNICs, each mount target is limited to about 600 MB/s of read or write traffic. If you have bandwidth-heavy workloads, consider spreading your workload across multiple mount targets after your file system exceeds 10 TB.