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NEW QUESTION: 1
A. Option D
B. Option C
C. Option A
D. Option E
E. Option B
Answer: C
Explanation:
With the repository checkpoint and restore function, you can back up copies of files from the master configuration repository. You can use the backups to restore the configuration to a previous state if future configuration changes cause operational problems. By using this function, you can reduce recovery time for problems that are caused by configuration changes. Studies of unplanned outages have shown that as much as 36 percent of unplanned outages are due to operator errors. A common source of operator error is a bad configuration change. The ability to quickly undo a bad configuration change is critical to minimizing the outage window.
References:
https://www.ibm.com/support/knowledgecenter/SSAW57_8.5.5/com.ibm.websphere.nd.doc
/ae/cwve_xdsochckpt.html
NEW QUESTION: 2
Your company has a Microsoft Azure Active Directory (Azure AD) tenant named contoso.onmicrosoft.com.
You purchase a domain named contoso.com from a registrar and add all the required DNS records.
You create a user account named User1. User1 is configured to sign in as [email protected].
You need to configure User1 to sign in as [email protected].
Which three actions should you perform in sequence? To answer, move the appropriate actions from the list of actions to the answer area and arrange them in the correct order.
Answer:
Explanation:
Explanation:
The first step is to add the contoso.com domain to Office 365. You do this by adding a custom domain. When you add a custom domain to office 365, you can use the domain as your email address or to sign in to Office 365.
The second step is to verify the custom domain. This is to prove that you own the domain. You can verify the custom domain by adding a DNS record to the domain DNS zone.
When you have added and verified the domain, you can configure the user accounts to use it. To configure User1 to sign in as [email protected], you need to change the username of User1. In Office 365, the username is composed of two parts. The first part is the actual username (User1) and the second part is the domain. You need to modify the username of User1 by selecting the contoso.com domain from the dropdown list of domains. The dropdown list of domains contains the <domain>.onmicrosoft.com domain and any custom domains that have been added.
Reference:
https://docs.microsoft.com/en-us/office365/admin/setup/add-domain?view=o365-worldwide
NEW QUESTION: 3
An organization is conducting penetration testing to identify possible network vulnerabilities. The
penetration tester has already identified active hosts in the network and is now scanning individual hosts to
determine if any are running a web server. The output from the latest scan is shown below:
Which of the following commands would have generated the output above?
A. -nmap -sV 192.168.1.13 -p 80
B. -nmap -sP 192.168.1.13 -p ALL
C. -nmap -sP 192.168.1.0/24 -p ALL
D. -nmap -sV 192.168.1.1 -p 80
Answer: A
NEW QUESTION: 4
EIGRP OTP実装でのLISPカプセル化について正しい説明はどれですか。
A. OTPはLISPカプセル化を使用してネイバーからルートを取得します
B. OTPは動的マルチポイントトンネリングにLISPカプセル化を使用します
C. LISPはネクストホップを学習します
D. OTPはLISPコントロールプレーンを維持します
Answer: D
Explanation:
The EIGRP Over the Top solution can be used to ensure connectivity between disparate EIGRP sites. This feature uses EIGRP on the control plane and Locator ID Separation Protocol (LISP) encapsulation on the data plane to route traffic across the underlying WAN architecture. EIGRP is used to distribute routes between customer edge (CE) devices within the network, and the traffic forwarded across the WAN architecture is LISP encapsulated.
EIGRP OTP only uses LISP for the data plane, EIGRP is still used for the control plane. Therefore we cannot say OTP uses LISP encapsulation for dynamic multipoint tunneling as this requires encapsulating both data and control plane traffic -> Answer 'OTP uses LISP encapsulation for dynamic multipoint tunneling' is not correct.
In OTP, EIGRP serves as the replacement for LISP control plane protocols (therefore EIGRP will learn the next hop, not LISP -> Answer 'LISP learns the next hop' is not correct). Instead of doing dynamic EID-to-RLOC mappings in native LISP-mapping services, EIGRP routers running OTP over a service provider cloud create targeted sessions, use the IP addresses provided by the service provider as RLOCs, and exchange routes as EIDs. Let's take an example:
If R1 and R2 ran OTP to each other, R1 would learn about the network 10.0.2.0/24 from R2 through EIGRP, treat the prefix 10.0.2.0/24 as an EID prefix, and take the advertising next hop
198.51.100.62 as the RLOC for this EID prefix. Similarly, R2 would learn from R1 about the network 10.0.1.0/24 through EIGRP, treat the prefix 10.0.1.0/24 as an EID prefix, and take the advertising next hop 192.0.2.31 as the RLOC for this EID prefix. On both routers, this information would be used to populate the LISP mapping tables. Whenever a packet from 10.0.1.0/24 to
10.0.2.0/24 would arrive at R1, it would use its LISP mapping tables just like in ordinary LISP to discover that the packet has to be LISP encapsulated and tunneled toward 198.51.100.62, and vice versa. The LISP data plane is reused in OTP and does not change; however, the native LISP mapping and resolving mechanisms are replaced by EIGRP.
Reference:
Which feature is supported by EIGRP but is not supported by OSPF?