Exam Code: C_S4EWM_1909
Exam Name: SAP Certified Application Associate - Extended Warehouse Management with SAP S/4HANA
Certification: SAP Certified Application Associate
Total Questions: 132 Q&A
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NEW QUESTION: 1
What is the purpose of Inverse ARP?
A. to map a known SPID to a MAC address
B. to map a known IP address to a SPID
C. to map a known IP address to a MAC address
D. to map a known MAC address to an IP address
E. to map a known DLCI to a MAC address
F. to map a known DLCI to an IP address
Cisco Frame Relay Configurations
Frame-Relay (a Layer 2 protocol) uses Inverse-Arp to map a know Layer 2 Address (DLCI) to a unknow Layer 3 Address.
Dynamic address mapping relies on the Frame Relay Inverse Address Resolution Protocol (Inverse ARP), defined by RFC 1293, to resolve a next hop network protocol address to a local DLCI value. The Frame Relay router sends out Inverse ARP requests on its Frame Relay PVC to discover the protocol address of the remote device connected to the Frame Relay network. The responses to the Inverse ARP requests are used to populate an address-to-DLCI mapping table on the Frame Relay router or access server. The router builds and maintains this address-to-DLCI mapping table, which contains all resolved Inverse ARP requests, including both dynamic and static mapping entries.
When data needs to be transmitted to a remote destination address, the router performs a lookup on its routing table to determine whether a route to that destination address exists and the next hop address or directly connected interface to use in order to reach that destination. Subsequently, the router consults its address-to-DLCI mapping table for the local DLCI that corresponds to the next hop address. Finally, the router places the frames targeted to the remote destination on its identified outgoing local DLCI.
On Cisco routers, dynamic Inverse ARP is enabled by default for all network layer protocols enabled on the physical interface. Packets are not sent out for network layer protocols that are not enabled on the physical interface. For example, no dynamic Inverse ARP resolution is performed for IPX if ipx routing is not enabled globally and there is no active IPX address assigned to the interface. Because dynamic Inverse ARP is enabled by default, no additional Cisco IOS command is required to enable it on an interface.
Example 4-16 shows the output of the show frame-relay map privileged EXEC mode command. The address-to-DLCI mapping table displays useful information. The output of the command shows that the next hop address 172.16.1.2 is dynamically mapped to the local DLCI 102, broadcast is enabled on the interface, and the interface's status is currently active.
After enabling Frame Relay on the interface, the Cisco router does not perform Inverse ARP until IP routing is enabled on the router. By default, IP routing is enabled on a Cisco router. If IP routing has been turned off, enable IP routing with the ip routing command in the global configuration mode. After IP routing is enabled, the router performs Inverse ARP and begins populating the address-to-DLCI mapping table with resolved entries.
NEW QUESTION: 2
Which option must be defined to apply a configuration across a potentially large number of switches in the
most scalable way?
A. a switch profile
B. an interface policy
C. a configuration policy
D. a group policy
NEW QUESTION: 3
Your network contains an Active Directory domain named contoso.com. The domain contains a server named Server1. Server1 runs Windows Server 2012 and has the Hyper- V server role installed. On Server1, you create and start a virtual machine named VM1.
VM1 is configured as shown in the following table.
You plan to create a snapshot of VM1. You need to recommend a solution to minimize the amount of disk space used for the snapshot of VM1.
What should you do before you create the snapshot?
A. Run the Resize-VHD cmdlet.
B. Run the Stop-VM cmdlet.
C. Convert disk1.vhd to a dynamically expanding disk.
D. Decrease the Minimum RAM.
E. Shut down VM1.
F. Configure VM1 to have a smaller virtual disk.
G. Run the Convert-VHD cmdlet.
H. Decrease the Maximum RAM.
Virtual machine snapshots are file-based snapshots of the state, disk data, and configuration of a virtual
machine at a specific point in time.
You can take multiple snapshots of a virtual machine, even while it is running.
You can then revert the virtual machine to any of the previous states by applying a snapshot to the virtual
Taking a snapshot of a VM is to in essence freeze the current state and make it a parent disk based on
current state, and at the same time create a child disk to capture all subsequent changes. - See more at:
Snapshots require adequate storage space. Snapshots are stored as .avhd files in the same location at the
virtual hard disk. Taking multiple snapshots can quickly consume a large amount of storage space.
When you use Hyper-V Manager to delete a snapshot, the snapshot is removed from the snapshot tree but the .avhd file is not deleted until you turn off the virtual machine.
Each snapshot introduces a parent-child dependency of the runtime environment when the snapshot was taken, and over time a series of backups will results in a multi-level hierarchy of snapshots with nested parent-child dependencies.
When you have systems that are required to be up and running 24/7 it basically throws away any use that snapshots have. It seems somewhat ridiculous that you have to bring a system down to delete the snapshot when one of the reasons you created the snapshot was to help reduce downtime in case something goes wrong. It is even more ridiculous that if you don't power down your system and wait for the vhd to merge, the snapshot will continue to grow until the system comes crashing down due to a lack of disk space! (Microsoft does not recommend snapshots for production environments)
http://www.laneolson.ca/2009/10/09/hyper-v-snapshots-and-disk-space/ http://blogs.technet.com/b/yungchou/archive/2013/01/23/hyper-v-virtual-hard-disk-vhd-operationsexplained.aspx http://zoom.it/12u8 http://www.server-talk.eu/wp-content/uploads/article_2010-05-28_02.png http://blogs.msdn.com/b/virtual_pc_guy/archive/2009/04/15/what-happens-when-i-delete-a-snapshot-hyperv.aspx
NEW QUESTION: 4
A Machine Learning Specialist working for an online fashion company wants to build a data ingestion solution for the company's Amazon S3-based data lake.
The Specialist wants to create a set of ingestion mechanisms that will enable future capabilities comprised of:
* Real-time analytics
* Interactive analytics of historical data
* Clickstream analytics
* Product recommendations
Which services should the Specialist use?
A. Amazon Athena as the data catalog; Amazon Kinesis Data Streams and Amazon Kinesis Data Analytics for historical data insights; Amazon DynamoDB streams for clickstream analytics; AWS Glue to generate personalized product recommendations
B. Amazon Athena as the data catalog; Amazon Kinesis Data Streams and Amazon Kinesis Data Analytics for near-realtime data insights; Amazon Kinesis Data Firehose for clickstream analytics; AWS Glue to generate personalized product recommendations
C. AWS Glue as the data dialog; Amazon Kinesis Data Streams and Amazon Kinesis Data Analytics for real-time data insights; Amazon Kinesis Data Firehose for delivery to Amazon ES for clickstream analytics; Amazon EMR to generate personalized product recommendations
D. AWS Glue as the data catalog; Amazon Kinesis Data Streams and Amazon Kinesis Data Analytics for historical data insights; Amazon Kinesis Data Firehose for delivery to Amazon ES for clickstream analytics; Amazon EMR to generate personalized product recommendations
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