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NEW QUESTION: 1
What is the command to add another IP address (192.168.1.2) to a network interface (eth0) that already has (at least) one IP address in the 192.168.1.0/24 subnet?
A. ip add addr 192.168.1.2/32 dev eth0
B. ip addr add 192.168.1.2/32 dev eth0
C. ifconfig eth0 192.168.1.2 netmask 255.255.255.255
D. ipconfig eth0 192.168.1.2
Answer: B
NEW QUESTION: 2
You manage a server that has SQL Server installed and hosts databases for five applications. Each application has a different login to the SQL Server instance.
You need to create a TCP endpoint to be used only by a login named Application3. The solution must ensure that Application3 only uses the new endpoint.
Which three statements should you execute? Each correct answer presents part of the solution.
A. REVOKE CONNECT ON ENDPOINT::[TSQL Default TCP] TO PUBLIC
B. DENY CONNECT ON ENDPOINT::[TSQL Default TCP] TO Application3
C. GRANT CONNECT ON ENDPOINT::[TSQL Default TCP] TO PUBLIC
D. GRANT CONNECT ON ENDPOINT::[TSQL Default TCP] TO Application3
E. REVOKE CONNECT ON ENDPOINT::[TSQL Default TCP] TO Application3
F. CREATE ENDPOINT Application3_EndPoint STATE=STARTED
AS TCP (LISTENER_PORT=1388)
G. GRANT .CONNECT ON ENDPOINT:: Application3_EndPoint TO Public
Answer: A,D,F
Explanation:
Explanation/Reference:
Explanation:
C: Create the endpoint
A: Grant permissions to Appliciation3 on the endpoint.
G: Revoke information from public on the endpoint.
Incorrect Answers:
B: We should grant, not deny, access to Application3.
D, E: Access to Public should not be granted.
NEW QUESTION: 3
SIMULATION
Use the following login credentials as needed:
Azure Username: xxxxx
Azure Password: xxxxx
The following information is for technical support purposes only:
Lab Instance: 10543936
You need to create an Azure Storage account named account10543936. The solution must meet the following requirements:
* Minimize storage costs.
* Ensure that account10543936 can store many image files.
* Ensure that account10543936 can quickly retrieve stored image files.
To complete this task, sign in to the Azure portal.
A. Create a general-purpose v2 storage account, which provides access to all of the Azure Storage services: blobs, files, queues, tables, and disks.
1. On the Azure portal menu, select All services. In the list of resources, type Storage Accounts. As you begin typing, the list filters based on your input. Select Storage Accounts.
2. On the Storage Accounts window that appears, choose Add.
3. Select the subscription in which to create the storage account.
4. Under the Resource group field, select Create new. Enter the name for your new resource group, as shown in the following image.
5. Next, enter the name account10543936 for your storage account.
6. Select a location for your storage account, or use the default location.
7. Leave these fields set to their default values:
Deployment model: Resource Manager
Performance: Standard
Account kind: StorageV2 (general-purpose v2)
Replication: Read-access geo-redundant storage (RA-GRS)
Access tier: Hot
8. Select Review + Create to review your storage account settings and create the account.
9. Select Create.
B. Create a general-purpose v2 storage account, which provides access to all of the Azure Storage services: blobs, files, queues, tables, and disks.
1. On the Azure portal menu, select All services. In the list of resources, type Storage Accounts.
2. On the Storage Accounts window that appears, choose Add.
3. Select the subscription in which to create the storage account.
4. Under the Resource group field, select Create new. Enter the name for your new resource group, as shown in the following image.
5. Next, enter the name account10543936 for your storage account.
6. Select a location for your storage account, or use the default location.
7. Leave these fields set to their default values:
Deployment model: Resource Manager
Replication: Read-access geo-redundant storage (RA-GRS)
Access tier: Hot
8. Select Review + Create to review your storage account settings and create the account.
9. Select Create.
Answer: A
Explanation:
Reference:
https://docs.microsoft.com/en-us/azure/storage/common/storage-account-create
NEW QUESTION: 4
Frame relay and X.25 networks are part of which of the following?
A. Circuit-switched services
B. Cell-switched services
C. Dedicated digital services
D. Packet-switched services
Answer: D
Explanation:
Frame relay and X.25 are both examples of packet-switching technologies. In packet-switched networks there are no dedicated connections between endpoints, and data is divided into packets and reassembled on the receiving end.
Frame Relay is an example of a packet-switched technology. Packet-switched networks enable end stations to dynamically share the network medium and the available bandwidth. The following two techniques are used in packet-switching technology:
Variable-length packets Statistical multiplexing
Variable-length packets are used for more efficient and flexible data transfers. These packets are switched between the various segments in the network until the destination is reached.
Statistical multiplexing techniques control network access in a packet-switched network. The advantage of this technique is that it accommodates more flexibility and more efficient use of bandwidth. Most of today's popular LANs, such as Ethernet and Token Ring, are packet-switched networks.
Frame Relay often is described as a streamlined version of X.25, offering fewer of the robust capabilities, such as windowing and retransmission of last data that are offered in X.25. This is because Frame Relay typically operates over WAN facilities that offer more reliable connection services and a higher degree of reliability than the facilities available during the late 1970s and early 1980s that served as the common platforms for X.25 WANs. As mentioned earlier, Frame Relay is strictly a Layer 2 protocol suite, whereas X.25 provides services at Layer 3 (the network layer) as well. This enables Frame Relay to offer higher performance and greater transmission efficiency than X.25, and makes Frame Relay suitable for current WAN applications, such as LAN interconnection.
The following answers are incorrect:
Circuit-switched services. An example of a circuit-switched service are Integrated Services Digital Network (ISDN) and Point-to-Point Protocol (PPP). Frame Relay and X.25 do not use circuit switching technology.
Cell-switched services. This is a distractor.
Dedicated digital services. A packet switched network is commonly via a digital method, but is not dedicated. Examples of a Dedicated digital service might be a Permanent Virtual Circuit (PVC), which does not use packet switching.
The following reference(s) were/was used to create this question: The CISCO Wiki on Frame Relay
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