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NEW QUESTION: 1
You have an on-premises file server named Server1 that runs Windows Server 2016.
You have an Azure subscription that contains an Azure file share.
You deploy an Azure File Sync Storage Sync Service, and you create a sync group.
You need to synchronize files from Server1 to Azure.
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
Step 1: Install the Azure File Sync agent on Server1
The Azure File Sync agent is a downloadable package that enables Windows Server to be synced with an Azure file share Step 2: Register Server1.
Register Windows Server with Storage Sync Service
Registering your Windows Server with a Storage Sync Service establishes a trust relationship between your server (or cluster) and the Storage Sync Service.
Step 3: Add a server endpoint
Create a sync group and a cloud endpoint.
A sync group defines the sync topology for a set of files. Endpoints within a sync group are kept in sync with each other. A sync group must contain one cloud endpoint, which represents an Azure file share and one or more server endpoints. A server endpoint represents a path on registered server.
References: https://docs.microsoft.com/en-us/azure/storage/files/storage-sync-files-deployment-guide
NEW QUESTION: 2
Which two statements are true about unicast RPF? (Choose two.)
A. Unicast RPF strict mode supports symmetric paths.
B. CEF is optional with Unicast RPF, but when CEF is enabled it provides better performance.
C. Unicast RPF strict mode supports asymmetric paths.
D. Unicast RPF requires CEF to be enabled.
E. Unicast RPF strict mode works better with multihomed networks.
Answer: A,D
Explanation:
Explanation/Reference:
Explanation:
Unicast RPF requires Cisco express forwarding (CEF) to function properly on the router.
Strict Versus Loose Checking Mode
The Unicast RPF in Strict Mode feature filters ingress IPv4 traffic in strict checking mode and forwards packets only if the following conditions are satisfied.
An IPv4 packet must be received at an interface with the best return path (route) to the packet source (a process called symmetric routing). There must be a route in the Forwarding Information Base (FIB) that matches the route to the receiving interface. Adding a route in the FIB can be done via static route, network statement, or dynamic routing.
IPv4 source addresses at the receiving interface must match the routing entry for the interface.
References:
http://www.cisco.com/c/en/us/td/docs/ios/12_2/security/configuration/guide/fsecur_c/scfrpf.html
http://www.cisco.com/c/en/us/td/docs/ios/12_0s/feature/guide/srpf_gsr.html
NEW QUESTION: 3
Which of the following is the correct sequence of how KMS manages the keys when used along with the Redshift cluster service Please select:
A. The master keys encrypts the data encryption keys. The data encryption keys encrypts the database key
B. The master keys encrypts the database key. The database key encrypts the data encryption keys.
C. The master keys encrypts the cluster key. The cluster key encrypts the database key. The database key encrypts the data encryption keys.
D. The master keys encrypts the cluster key, database key and data encryption keys
Answer: C
Explanation:
Explanation
This is mentioned in the AWS Documentation
Amazon Redshift uses a four-tier, key-based architecture for encryption. The architecture consists of data encryption keys, a database key, a cluster key, and a master key.
Data encryption keys encrypt data blocks in the cluster. Each data block is assigned a randomly-generated AES-256 key. These keys are encrypted by using the database key for the cluster.
The database key encrypts data encryption keys in the cluster. The database key is a randomly-generated AES-256 key. It is stored on disk in a separate network from the Amazon Redshift cluster and passed to the cluster across a secure channel.
The cluster key encrypts the database key for the Amazon Redshift cluster.
Option B is incorrect because the master key encrypts the cluster key and not the database key Option C is incorrect because the master key encrypts the cluster key and not the data encryption keys Option D is incorrect because the master key encrypts the cluster key only For more information on how keys are used in Redshift, please visit the following URL:
https://docs.aws.amazon.com/kms/latest/developereuide/services-redshift.html The correct answer is: The master keys encrypts the cluster key. The cluster key encrypts the database key.
The database key encrypts the data encryption keys.
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