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NEW QUESTION: 1
Which statement best describes SOA governance continuous improvement?
A. SOA governance continuous improvement enablesyour organization to define and deploy your ownfocused and customized SOA governance model.
B. SOA governance continuous improvement enables your organization to make sure that Services are reused.
C. SOA governance continuous improvement enables your organization to achieve ROI on you SOA initiative.
D. SOA governance continuous improvement enables your organization to define and deploy your own focused and customized SOA initiative.
Answer: D
Explanation:
The goal of the SOA Governance Framework is to enable organizations to define and deploy their own focused and customized SOA Governance Model.
Since aspects of the SOA Governance Model require culture change, an SOA Governance Regimen should never be deployed in a big-bang approach. The framework defines an incremental deployment approach so that organizations can continue to meet their current demands while moving towards their long-term goals for SOA.
Reference:https://www.opengroup.org/soa/source-book/gov/gov.htm
NEW QUESTION: 2
When an index is created for a table, where is the metadata for that index stored?
A. In the system catalog.
B. In the table definition.
C. In the schema that the index resides in.
D. In the metadata of the table the index was created for.
Answer: A
NEW QUESTION: 3
Which processes support intercompany reconciliation in Central Finance? Note: There are 2 correct answers to this question.
A. Reconciliation of open payments
B. Reconciliation of vender/customer open items
C. Reconciliation of open dispute cases
D. Reconciliation of GL account open items
Answer: B,D
NEW QUESTION: 4
実装グループは、テストベッドを使用して「概念実証」を実行しており、クライアント1とクライアント2の両方が209.65.200.241のWEBサーバーにアクセスする必要があります。ネットワークアドレス指定、ルーティングスキーム、DHCPサービス、NTPサービス、レイヤー2接続、FHRPサービス、およびデバイスセキュリティにいくつかの変更を加えた後、クライアント1が209.65.200.241アドレスにpingできないことを示すトラブルチケットが開かれました。
サポートされているコマンドを使用して、この障害の原因を特定し、次の質問に答えてください。
障害状態の解決策は何ですか?
A. インターフェイスSerial0 / 0/0構成の下でip access-group edge_security inコマンドを削除し、ip access-group edge_security outコマンドを入力します。
B. インターフェイスSerial0 / 0/1の下で、ip access-group edge_security outコマンドを入力します。
C. ip access-list extended edge_security構成の下で、permit ip 209.65.200.224を追加します
0.0.0.3任意のコマンド。
D. ip access-list extended edge_security configurationの下で、deny ip 10.0.0.0.0を削除します
0.255.255.255任意のコマンド。
Answer: C
Explanation:
On R1, we need to permit IP 209.65.200.222/30 under the access list.
Ticket 7 : Port Security
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.
Please note. Some of the questions will require you to use the scroll bar to see all options.
Fault Isolation
Read the ticket scenario to understand the fault condition.
Open the appropriate topology, based upon the ticket scenario.
Open the console of the desired device by clicking on that device in the topology, based upon your troubleshooting methodology.
Use the supported show, ping and trace commands to begin your fault isolation process.
Move to other devices as need by clicking on those devices within the topology.
Fault Identification
The trouble ticket will include three questions that you will need to answer:
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".
When you click "DONE", the trouble ticket will turn RED and will no longer be accessible.
You may also use the "Previous Question" button to review questions within that specific ticket.
To complete a trouble ticket, answer all three questions and click "DONE". This will store your response 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 next item.
Topology Overview (Actual Troubleshooting lab design is for below network design) Client Should have IP 10.2.1.3 EIGRP 100 is running between switch DSW1 & DSW2 OSPF (Process ID 1) is running between R1, R2, R3, R4 Network of OSPF is redistributed in EIGRP BGP 65001 is configured on R1 with Webserver cloud AS 65002 HSRP is running between DSW1 & DSW2 Switches 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
Client is unable to ping IP 209.65.200.241
Solution
Steps need to follow as below:-
1. When we check on client 1 & Client 2 desktop we are not receiving DHCP address from R4 ipconfig ----- Client will be getting 169.X.X.X
2. On ASW1 port Fa1/0/ 1 & Fa1/0/2 access port VLAN 10 was assigned but when we checked interface it was showing down Sh run ------- check for running config of int fa1/0/1 & fa1/0/2 (switchport access Vlan 10 will be there with switch port security command). Now check as below Sh int fa1/0/1 & sh int fa1/0/2
3. As seen on interface the port is in err-disable mode so need to clear port.
4. Change required: On ASW1, we need to remove port-security under interface fa1/0/1 & fa1/0/2.