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NEW QUESTION: 1
Your network contains an Active Directory domain named contoso.com that is federated to an Azure Active Directory (Azure AD) tenant. The on-premises domain contains a VPN server named Server1 that runs Windows Server 2016.
You have a single on-premises location that uses an address space of 172.16.0.0/16.
You need to implement two-factor authentication for users who establish VPN connections to Server1.
What should you include in the implementation?
A. In Azure AD, create a conditional access policy and a trusted named location
B. In Azure AD, configure the authentication methods. From the multi-factor authentication (MFA) service settings, create a trusted IP range
C. Configure an Active Directory Federation Services (AD FS) server on-premises
D. Install and configure Azure MFA Server on-premises
Answer: D
Explanation:
Explanation/Reference:
Explanation:
You need to download, install and configure the MFA Server.
References:
https://docs.microsoft.com/en-us/azure/active-directory/authentication/howto-mfaserver-deploy Testlet 1 Case study This is a case study. Case studies are not timed separately. You can use as much exam time as you would like to complete each case. However, there may be additional case studies and sections on this exam. You must manage your time to ensure that you are able to complete all questions included on this exam in the time provided.
To answer the questions included in a case study, you will need to reference information that is provided in the case study. Case studies might contain exhibits and other resources that provide more information about the scenario that is described in the case study. Each question is independent of the other questions in this case study.
At the end of this case study, a review screen will appear. This screen allows you to review your answers and to make changes before you move to the next section of the exam. After you begin a new section, you cannot return to this section.
To start the case study
To display the first question in this case study, click the Next button. Use the buttons in the left pane to explore the content of the case study before you answer the questions. Clicking these buttons displays information such as business requirement, existing environment, and problem statements. If the case study has an All Information tab, note that the information displayed is identical to the information displayed on the subsequent tabs. When you are ready to answer a question, click the Question button to return to the question.
Overview
Contoso, Ltd. is a US-based financial services company that has a main office in New York and a branch office in San Francisco.
Existing Environment
Payment Processing System
Contoso hosts a business-critical payment processing system in its New York data center. The system has three tiers: a front-end web app, a middle-tier web API, and a back-end data store implemented as a Microsoft SQL Server 2014 database. All servers run Windows Server 2012 R2.
The front-end and middle-tier components are hosted by using Microsoft Internet Information Services (IIS). The application code is written in C# and ASP.NET. The middle-tier API uses the Entity Framework to communicate to the SQL Server database. Maintenance of the database is performed by using SQL Server Agent jobs.
The database is currently 2 TB and is not expected to grow beyond 3 TB.
The payment processing system has the following compliance-related requirements:
Encrypt data in transit and at rest. Only the front-end and middle-tier components must be able to
access the encryption keys that protect the data store.
Keep backups of the data in two separate physical locations that are at least 200 miles apart and can
be restored for up to seven years.
Support blocking inbound and outbound traffic based on the source IP address, the destination IP
address, and the port number.
Collect Windows security logs from all the middle-tier servers and retain the logs for a period of seven
years.
Inspect inbound and outbound traffic from the front-end tier by using highly available network
appliances.
Only allow all access to all the tiers from the internal network of Contoso.
Tape backups are configured by using an on-premises deployment of Microsoft System Center Data Protection Manager (DPM), and then shipped offsite for long term storage.
Historical Transaction Query System
Contoso recently migrated a business-critical workload to Azure. The workload contains a .NET web service for querying the historical transaction data residing in Azure Table Storage. The .NET web service is accessible from a client app that was developed in-house and runs on the client computers in the New York office. The data in the table storage is 50 GB and is not expected to increase.
Current Issues
The Contoso IT team discovers poor performance of the historical transaction query system, at the queries frequently cause table scans.
Requirements
Planned Changes
Contoso plans to implement the following changes:
Migrate the payment processing system to Azure.
Migrate the historical transaction data to Azure Cosmos DB to address the performance issues.
Migration Requirements
Contoso identifies the following general migration requirements:
Infrastructure services must remain available if a region or a data center fails. Failover must occur
without any administrative intervention.
Whenever possible, Azure managed services must be used to minimize management overhead.
Whenever possible, costs must be minimized.
Contoso identifies the following requirements for the payment processing system:
If a data center fails, ensure that the payment processing system remains available without any
administrative intervention. The middle-tier and the web front end must continue to operate without any additional configurations.
Ensure that the number of compute nodes of the front-end and the middle tiers of the payment
processing system can increase or decrease automatically based on CPU utilization.
Ensure that each tier of the payment processing system is subject to a Service Level Agreement (SLA)
of 99.99 percent availability.
Minimize the effort required to modify the middle-tier API and the back-end tier of the payment
processing system.
Generate alerts when unauthorized login attempts occur on the middle-tier virtual machines.
Ensure that the payment processing system preserves its current compliance status.
Host the middle tier of the payment processing system on a virtual machine.
Contoso identifies the following requirements for the historical transaction query system:
Minimize the use of on-premises infrastructure services.
Minimize the effort required to modify the .NET web service querying Azure Cosmos DB.
Minimize the frequency of table scans.
If a region fails, ensure that the historical transactions query system remains available without any
administrative intervention.
Information Security Requirements
The IT security team wants to ensure that identity management is performed by using Active Directory.
Password hashes must be stored on-premises only.
Access to all business-critical systems must rely on Active Directory credentials. Any suspicious authentication attempts must trigger a multi-factor authentication prompt automatically. legitimate users must be able to authenticate successfully by using multi-factor authentication.
NEW QUESTION: 2
After you import users from Cisco Unified Communications Manager Express to Cisco Unity Express, you find that some users are missing. Which two reasons might be causing this problem? (Choose two.)
A. The username has numbers in the name.
B. The username is longer than 15 characters.
C. The ephone DN does not have the username and password.
D. The ephone is missing the username and password.
E. The username has spaces in the name.
F. The ephone is not marked as active.
Answer: D,E
NEW QUESTION: 3
Refer to the exhibit.
You have just created a new VRF on PE3. You have enabled debug
ip bgp vpnv4 unicast updates on PE1, and you can see the route in the debug, but not in the BGP VPNv4 table. Which two statements are true? (Choose two)
A. VPNv4 is not configured between PE1 and PE3
B. PE1 will reject the route due to automatic route filtering
C. address-family ipv4 vrf is not configured on PE3
D. After you configure route-target import 999:999 for a VRF on PE3, the route will be accepted
E. After you configure route-target import 999:999 for a VRF on PE1, the route will be accepted
Answer: B,E
Explanation:
Explanation
Because some PE routers might receive routing information they do not require, a basic requirement is to be able to filter the MP-iBGP updates at the ingress to the PE router so that the router does not need to keep this information in memory.
The Automatic Route Filtering feature fulfills this filtering requirement. This feature is available by default on all PE routers, and no additional configuration is necessary to enable it. Its function is to filter automatically VPN-IPv4 routes that contain a route target extended community that does not match any of the PE's configured VRFs. This effectively discards any unwanted VPN-IPv4 routes silently, thus reducing the amount of information that the PE has to store in memory -> Answer 'PE1 will reject the route due to automatic route filtering' is correct.
Reference: MPLS and VPN Architectures Book, Volume 1
The reason that PE1 dropped the route is there is no "route-target import 999:999" command on PE1 (so we see the "DENIED due to: extended community not supported" in the debug) so we need to type this command to accept this route -> Answer 'After you configure route-target import 999:999 for a VRF on PE1, the route will be accepted' is correct.
NEW QUESTION: 4
A. Option D
B. Option A
C. Option B
D. Option C
Answer: B