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Cisco 500-470 Exam is a certification exam for System Engineers who want to validate their knowledge and skills in Cisco Enterprise Networks SDA, SDWAN, and ISE technologies. 500-470 exam focuses on the latest networking technologies and solutions that are used in modern enterprise networks. It is designed to test your understanding of Cisco’s software-defined access (SDA), software-defined WAN (SDWAN), and identity services engine (ISE) technologies.
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Cisco Enterprise Networks SDA, SDWAN and ISE Exam for System Engineers Sample Questions (Q24-Q29):
NEW QUESTION # 24
Which three options describe fabric overlay concepts? (Choose three.)
Answer: B,C,F
NEW QUESTION # 25
Which two are benefits from a WAN design? (Choose two.)
Answer: B,D
Explanation:
Explanation
A WAN design is a plan for how to connect multiple sites or locations over a wide area network (WAN). A WAN design can have various benefits, depending on the goals and requirements of the organization. Two of the possible benefits from a WAN design are:
Ensure remote site uptime: A WAN design can help to ensure that remote sites or branches have reliable and consistent connectivity to the central site or the cloud. This can improve the availability and performance of critical applications and services, such as voice, video, collaboration, and data backup. A WAN design can also provide redundancy and resiliency in case of network failures or disasters, by using multiple WAN links, backup routes, or failover mechanisms. For example, SD-WAN is a WAN design that uses software to dynamically route traffic over the best available WAN link, based on the network conditions and the application requirements1.
Prioritize and secure with granular control: A WAN design can also help to prioritize and secure the traffic and applications that flow over the WAN. This can enhance the quality of service (QoS) and the security of the network. A WAN design can use various techniques, such as traffic shaping, policy-based routing, encryption, firewall, or VPN, to classify, prioritize, and secure the WAN traffic according to the business needs and the security policies. For example, TrustSec is a WAN design that uses software-defined segmentation to enforce granular access policies based on the identity and context of users, devices, and applications2.
The other options, provide lower quality service to guest users, reduce cost and increase operational complexity, and lower circuit bandwidth requirements, are not benefits from a WAN design. Providing lower quality service to guest users is not a desirable outcome, as it can affect the user experience and the reputation of the organization. Reducing cost and increasing operational complexity is a trade-off that may not be worth it, as it can create more challenges and risks for the network management and maintenance. Lowering circuit bandwidth requirements is not a benefit in itself, but a means to achieve other benefits, such as reducing cost or improving performance. A WAN design should aim to optimize the bandwidth utilization and allocation, rather than simply lowering it. References := : 1: Cisco SD-WAN Solution Design Guide (CVD) - Cisco1, 2:
Cisco TrustSec Solution Overview - Cisco
NEW QUESTION # 26
What definition is not part of 4D Training?
Answer: D
Explanation:
Explanation/Reference:
Reference: https://www.cisco.com/c/en_sg/partners/blackbelt/enterprise-networking.html#~stickynav=2
NEW QUESTION # 27
Which two products are supported as "Extended" in DNA-C 1.1? (Choose two.)
Answer: B,C
NEW QUESTION # 28
Which three technologies are used in an SD-Access Fabric? (Choose three.)
Answer: C,D,E
Explanation:
Explanation
SD-Access Fabric is a network architecture that uses three key technologies to create a virtual overlay network on top of the physical underlay network. These technologies are:
VXLAN: Virtual Extensible LAN is a tunneling protocol that encapsulates Layer 2 frames in UDP packets and transports them over an IP network. VXLAN enables the creation of large-scale virtual networks that span multiple Layer 3 domains. VXLAN is used in SD-Access Fabric to carry user traffic between different fabric nodes and to provide network segmentation based on virtual network identifiers (VNIs).
TrustSec: Cisco TrustSec is a security framework that uses software-defined segmentation to enforce granular access policies based on the identity and context of users, devices, and applications. TrustSec uses scalable group tags (SGTs) to classify endpoints into logical groups and applies security policies based on the source and destination SGTs. TrustSec is integrated with SD-Access Fabric to provide micro-segmentation within a virtual network and to simplify policy management across the fabric.
LISP: Locator/ID Separation Protocol is a routing protocol that decouples the endpoint identity (EID) from its location (RLOC) in the network. LISP uses two types of devices: ingress tunnel routers (ITRs) and egress tunnel routers (ETRs) to map EIDs to RLOCs and to encapsulate and decapsulate packets.
LISP is used in SD-Access Fabric to provide control plane functions, such as endpoint registration, discovery, and mobility. LISP also enables seamless integration of SD-Access Fabric with external networks, such as the Internet, WAN, or data center.
The other options, OTV, RSVP, and MPLS, are not used in SD-Access Fabric. OTV is another tunneling protocol that extends Layer 2 connectivity across Layer 3 domains, but it is not compatible with VXLAN.
RSVP is a signaling protocol that reserves network resources for quality of service (QoS), but it is not required for SD-Access Fabric. MPLS is a packet-switching technology that labels packets and forwards them based on label switching routers (LSRs), but it is not involved in SD-Access Fabric. References := : Cisco SD-Access Solution Design Guide (CVD) - Cisco1, Cisco Software-Defined Access - Cisco Software-Defined Access Solution Overview2
NEW QUESTION # 29
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