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NEW QUESTION: 1
참고 :이 질문은 동일한 시나리오를 나타내는 일련의 질문 중 일부입니다. 시리즈의 각 질문에는 명시된 목표를 달성할수 있는 고유한 솔루션이 포함되어 있습니다. 일부 질문 세트에는 둘 이상의 올바른 솔루션이 있을 수 있지만 다른 질문 세트에는 올바른 솔루션이 없을 수 있습니다.
이 섹션의 질문에 대답한 후에는 해당 질문으로 돌아올 수 없습니다. 결과적으로 이러한 질문은 검토 화면에 나타나지 않습니다.
다음 리소스가 포함된 Azure 구독이 있습니다.
서브넷 이름이 Subnet1 인 가상 네트워크
* NSG-VM1 및 NSG-Subnet1이라는 두 개의 네트워크 보안 그룹 (NSG)
* 원격 데스크톱 연결을 허용하는데 필요한 Windows Server 구성이 있는 VM1이라는 가상 머신 NSG-Subnet1에는 기본 인바운드 보안 규칙만 있습니다.
NSG-VM1에는 기본 인바운드 보안 규칙과 다음 사용자 지정 인바운드 보안 규칙이 있습니다.
* 우선 순위 : 100
* 출처 : 모든
* 소스 포트 범위 : *
* 목적지 : *
* 대상 포트 범위 : 3389
* 프로토콜 : UDP
* 조치 : 허용
VM1은 Subnet1에 연결됩니다. NSG1-VM1은 VM1의 네트워크 인터페이스와 연결되어 있습니다. NSG-Subnet1은 Subnet1과 연결되어 있습니다.
인터넷에서 VM1로 원격 데스크톱 연결을 설정할 수 있어야 합니다.
해결 방법 : 포트 범위 3389 동안 인터넷 소스에서 VirtualNetwork 대상으로의 연결을 허용하고 TCP 프로토콜을 사용하는 인바운드 보안 규칙을 NSG-Subnet1 및 NSG-VM1에 추가합니다.
이것이 목표를 달성합니까?
A.
B. 아니요
Answer: A
Explanation:
Explanation
The default port for RDP is TCP port 3389. A rule to permit RDP traffic must be created automatically when you create your VM.
Note on NSG-Subnet1: Azure routes network traffic between all subnets in a virtual network, by default.
References:
https://docs.microsoft.com/en-us/azure/virtual-machines/troubleshooting/troubleshoot-rdp-connection

NEW QUESTION: 2
Your network consists of one Active Directory domain. The domain contains servers that run Windows Server 2008. The relevant servers are configured as shown in the following table. (Click the Exhibit)

All client computers run Windows Vista.
You plan to deploy two Java-based applications on all client computers. The two applications each require a different version of the Java Runtime Environment (JRE). After testing, you notice that the two JREs prevent the applications from running on the same computer.
You need to recommend a solution that enables the two Java-based applications to run on all client computers.
What should you recommend?
A. Create two Windows Installer (MSI) packages that each contains one version of the JRE and one compatible application. On Server1, create a Group Policy object (GPO) that assigns both packages to all client computers.
B. Install the two JRE versions and the two Java-based applications on Server4. Configure all client computers to connect to the Java-based applications by using Terminal Services RemoteApp (TS RemoteApp).
C. Create two Windows Installer (MSI) packages that each contains one version of the JRE and one compatible application. On Server2, advertise both packages to all client computers.
D. Use the SoftGrid Sequencer to create two application packages that each contains one version of JRE and one compatible application. On Server3, stream both application packages to all client computers.
Answer: D
Explanation:
Explanation/Reference: To run two Java-based applications that require different versions of Java Runtime Environment (JRE) on all the client computers of the department you need to create two application packages using the SoftGrid Sequencer. Each package should contain one version of JRE and its compatible application.
SoftGrid packages and virtualizes Windows applications for delivery as network services.
SoftGrid basically insulates an application from other applications such that they don't conflict with one another. In this scenario, where different versions of the Java Runtime are required to run two applications you can use SoftGrid to"sequence" the required version of the JRE with the application. When the application is executed it sees only the JRE that it needs and not the other JRE that is "sequenced" with the other application.
You need to stream both application packages to all client computers on the Server3 because you need the execution of the application to happen on the Terminal Server so that applications can run on all client computers through Terminal Server. SoftGrid can be used on and Terminal Servers.
Reference: Re: SoftGrid General Queries
http://forums.microsoft.com/TechNet/ShowPost.aspx?PostID=3266992&SiteID=17
Reference: Application Packaging: The SoftGrid Sequencer http://www.microsoft.com/systemcenter/softgrid/evaluation/sequencer.mspx

NEW QUESTION: 3
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設定の下で、ip nat insideコマンドを入力します。
B. ip access-list標準nat_trafic設定の下で、permit 209.65.200.0 0.0.0.255コマンドを入力します。
C. ip access-list標準nat_trafic設定の下で、permit 10.2.0.0 0.0.255.255コマンドを入力します。
D. インターフェイスSerial0 / 0/0構成の下で、ip nat outsideコマンドを入力します。
Answer: C
Explanation:
On R1 we need to add the client IP address for reachability to server to the access list that is used to specify which hosts get NATed.
Ticket 6 : R1 ACL
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. Redistribution 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
2. Ipconfig ----- Client will be receiving IP address 10.2.1.3
3. IP 10.2.1.3 will be able to ping from R4 , R3, R2, R1
4. Look for BGP Neighbourship
5. Sh ip bgp summary ----- State of BGP will be in active state. This means connectivity issue between serial
6. Check for running config. i.e sh run --- over here check for access-list configured on interface as BGP is down (No need to check for NAT configuration as its configuration should be right as first need to bring BGP up)


7. In above snapshot we can see that access-list of edge_security on R1 is not allowing wan IP network
8. Change required: On R1, we need to permit IP 209.65.200.222/30 under the access list.

NEW QUESTION: 4

A. Remote Connectivity Analyzer
B. Microsoft Connectivity Analyzer
C. Office 365 Best Practices Analyzer
D. Office 365 Health, Readiness, and Connectivity Checks
Answer: D
Explanation:
Explanation
Running Office 365 Health, Readiness, and Connectivity Checks prior to setting up Office 365 allows you to make sure that your environment is prepared for the Office 365 services. It can find settings in your existing environment that might cause problems when you start to set up or use your services. This will allow you to fix or work around the potential problems to make your deployment path easier to complete.
References:
https://support.office.com/en-us/article/Office-365-readiness-checks-c01571b8-183e-4a61-9ca0-80729a48bbda