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NEW QUESTION: 1
Which two options are signaling protocols that are used in MPLS? (Choose two.)
A. CLNS
B. LDP
C. LISP
D. BFD
E. CDP
F. RSVP
Answer: B,F
Explanation:
Explanation/Reference:
Explanation:
* Signaling is the means by which LSRs all along the path know that they are a part of a given LSP. It is a signaling function by which the LSR knows that the internal transit path for the LSP depicted goes from Interface 2 to Interface 4.
* Label distribution is the means by which an LSR tells an upstream LSR what label value to use for a particular LSP.
There are four protocols that can perform the label distribution function:
* * * * Label Distribution Protocol (LDP)
Resource Reservation Protocol with Traffic Engineering Extensions (RSVP-TE) Constraint-Based Routed LDP (CR-LDP) Multiprotocol BGP LDP and RSVP-TE are the two most commonly used label distribution protocols Reference: http://www.networkworld.com/article/2237487/cisco-subnet/understanding-mpls-label- distribution.html
Topic 6, Infrastructure Services
NEW QUESTION: 2
A company plans to implement Dynamics 365 Supply Chain Management. The company has the following requirements:
* Use mobile devices for warehouse activities including cycle counting.
* Set up automatic cycle counting work IDs and assign the IDs to workers.
* Ensure that workers can group work IDs that are specific to a particular location, zone, or work pool.
* Ensure that workers can specify a cycle counting work ID that has a status of Open.
* Ensure that workers can count items in a warehouse location at any time.
You need to recommend cycle counting options that meet the company's requirements.
What should you recommend? To answer, drag the appropriate counting options to the correct requirements. Each counting option may be used once, more than once, or not at all. You may need to drag the split bar between panes or scroll to view content.
NOTE: Each correct selection is worth one point.
Answer:
Explanation:
Reference:
https://docs.microsoft.com/en-us/dynamics365/supply-chain/warehousing/cycle-counting
NEW QUESTION: 3
Which of the following is NOT true for risk management capability maturity level 1?
A. Risk management skills exist on an ad hoc basis, but are not actively developed
B. There is an understanding that risk is important and needs to be managed, but it is viewed as a technical issue and the business primarily considers the downside of IT risk
C. Decisions involving risk lack credible information
D. Risk appetite and tolerance are applied only during episodic risk assessments
Answer: C
Explanation:
Explanation/Reference:
Explanation:
The enterprise with risk management capability maturity level 0 makes decisions without having much knowledge about the risk credible information. In level 1, enterprise takes decisions on the basis of risk credible information.
Incorrect Answers:
A, C, D: An enterprise's risk management capability maturity level is 1 when:
There is an understanding that risk is important and needs to be managed, but it is viewed as a
technical issue and the business primarily considers the downside of IT risk.
Any risk identification criteria vary widely across the enterprise.
Risk appetite and tolerance are applied only during episodic risk assessments.
Enterprise risk policies and standards are incomplete and/or reflect only external requirements and lack
defensible rationale and enforcement mechanisms.
Risk management skills exist on an ad hoc basis, but are not actively developed.
Ad hoc inventories of controls that are unrelated to risk are dispersed across desktop applications.
NEW QUESTION: 4
パケットタイプを左側から右側の正しい説明にドラッグアンドドロップします。
Answer:
Explanation:
Explanation
Unlike legacy network technologies such as ISDN, Frame Relay, and ATM that defined separate data and control channels, IP carries all packets within a single pipe. Thus, IP network devices such as routers and switches must be able to distinguish between data plane, control plane, and management plane packets to treat each packet appropriately.From an IP traffic plane perspective, packets may be divided into four distinct, logical groups:1. Data plane packets - End-station, user-generated packets that are always forwarded by network devices to other end-station devices. From the perspective of the network device, data plane packets always have a transit destination IP address and can be handled by normal, destination IP address-based forwarding processes.2. Control plane packets - Network device generated or received packets that are used for the creation and operation of the network itself. From the perspective of the network device, control plane packets always have a receive destination IP address and are handled by the CPU in the network device route processor. Examples include protocols such as ARP, BGP, OSPF, and other protocols that glue the network together.3. Management plane packets - Network device generated or received packets, or management station generated or received packets that are used to manage the network. From the perspective of the network device, management plane packets always have a receive destination IP address and are handled by the CPU in the network device route processor. Examples include protocols such as Telnet, Secure Shell (SSH), TFTP, SNMP, FTP, NTP, and other protocols used to manage the device and/or network.4. Services plane packets - A special case of data plane packets, services plane packets are also user-generated packets that are also forwarded by network devices to other end-station devices, but that require high-touch handling by the network device (above and beyond normal, destination IP address-based forwarding) to forward the packet. Examples of high-touch handling include such functions as GRE encapsulation, QoS, MPLS VPNs, and SSL/IPsec encryption/decryption, etc. From the perspective of the network device, services plane packets may have a transit destination IP address, or may have a receive destination IP address (for example, in the case of a VPN tunnel endpoint).
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