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NEW QUESTION: 1
A. Yes
B. No
Answer: A
Explanation:
Each domain that you want to federate must either be added as a single sign-on domain or converted to be a single sign-on domain from a standard domain. Adding or converting a domain sets up a trust between AD FS and Microsoft Azure Active Directory (Microsoft Azure AD).
Note: The New-MSOLFederatedDomain cmdlet adds a new single sign-on domain (also known as identity-federated domain) to and configures the relying party trust settings between the on-premises AD FS server. Due to domain verification requirements, you may need to run this cmdlet several times in order to complete the process of adding the new single sign-on domain.
References:
https://msdn.microsoft.com/en-us/library/azure/dn194105(v=azure.98).aspx
https://msdn.microsoft.com/en-us/library/azure/jj205461.aspx
NEW QUESTION: 2
You are implementing ElGRP between the main office and branch offices. In Phase 1 you must implement and verify EIGRP configurations as mentioned in the topology in Phase 2. your colleague is expected to do NAT and ISP configurations Identity the issues that you are encountering during Phase 1 EIGRP implementation.
- Router R1 connects the main office to the Internet and routers R2 and R3 are internal routers
- Routers Branch 1 and Branch2 connect to router R2 in the main office.
- Users from the Branch1 LAN network 10 20 40 0724 are expected to
perform testing of the application that is hosted on the servers in
Server farm1, before servers are available for production
- The GRE tunnel is configured between R3 and Branch1, and traffic
between server farm1 and Branch1 LAN network 10 20 40 0/24 is routed
through the GRE tunnel using static routes
- The link between Branch1 and Branch2 is used as a secondary path in
the event of failure of the primary path to mam office
You have console access on R1. R2. R3. Branch1, and Branch2 devices Use only show commands to troubleshoot the issues Topology:
The traffic from Branch2 to the main office is using the secondary path instead of the primary path connected to R2. Which cause of the issue is true?
A. EIGRP packets were blocked by the inbound ACL on Branch2.
B. The network 192.163.11,0/30 was not advertised into EIGRP on Brancfi2.
C. The primary path has more link delay configured then secondary path which causes EIGRP to choose the secondary path.
D. The IP address was misconfigured between the Branch2 and R2 interfaces.
Answer: D
NEW QUESTION: 3
Scale1이라는 가상 머신 스케일 세트를 생성합니다. Scale1은 다음 그림과 같이 구성됩니다.
드롭 다운 메뉴를 사용하여 그래픽에 표시된 정보를 기반으로 각 설명을 완료하는 답변 선택을 선택하십시오.
Answer:
Explanation:
Explanation
Box 1:
The Autoscale scale out rule increases the number of VMs by 2 if the CPU threshold is 80% or higher. The initial instance count is 4 and rises to 6 when the 2 extra instances of VMs are added.
Box 2:
The Autoscale scale in rule decreases the number of VMs by 4 if the CPU threshold is 30% or lower. The initial instance count is 4 and thus cannot be reduced to 0 as the minimum instances is set to 2. Instances are only added when the CPU threshold reaches 80%.
References:
https://docs.microsoft.com/en-us/azure/azure-monitor/platform/autoscale-overview
https://docs.microsoft.com/en-us/azure/azure-monitor/platform/autoscale-best-practices
https://docs.microsoft.com/en-us/azure/azure-monitor/platform/autoscale-common-scale-patterns
NEW QUESTION: 4
Your network contains a server named Server1 that has the Routing and Remote Access service (RRAS) role service installed.
Server1 provides access to the internal network by using Point-to-Point Tunneling Protocol (PPTP).
Static RRAS filters on the external interface of Server1 allow only PPTP. The IP address of the external interface is 131.107.1.100.
You install the Web Server (IIS) role on Server1.
You need to ensure that users on the Internet can access a Web site on Server1 by using HTTP. The solution must minimize the number of open ports on Server1.
Which two static RRAS filters should you configure on Server1? (Each correct answer presents part of the solution. Choose two.)
A. An outbound filter that has the following configurations: Source network: 131.107.1.100/32 Destination network: Any Protocol: TCP (established) Port: 80
B. An inbound filter that has the following configurations: Source network: 131.107.1.100/32 Destination network: Any Protocol: TCP Port: Any
C. An outbound filter that has the following configurations: Source network: 131.107.1.100/32 Destination network: Any Protocol: TCP Port: Any
D. An outbound filter that has the following configurations: Source network: 131.107.1.100/32 Destination network: Any Port: 80
E. An inbound filter that has the following configurations: Source network: Any Destination network: 131.107.1.100/32 Protocol: TCP Port: 80
Answer: A,E
Explanation:
We are told the solution must minimize the # of open ports. Right away, this eliminates the 2 answers specifying "Port: Any"
We need users to access the web site on Server1 using HTTP (port 80), so we need an oubtound and inbound filter. Only 1 inbound filter meets the requirements, so we need to determine which outbound filter is correct.
The only difference between the 2 outbound filters for port 80 is that one specifies the protocol must be TCP, the other says TCP (established). In other words, this means it will only allow previously established TCP connections to get out from the web. This is the rule we want, as it is the most secure and will only let packets out to clients that have connected to the site first.
If we allow all TCP connections out, any compromise of the computer or malfunction of TCP program on the server could cause undesired effects for our users.