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NEW QUESTION: 1
Diphtheria is caused by:
A. Plasmodium.
B. Vibrio.
C. Neisseria.
D. Shigella.
E. Corynebacterium.
Answer: E
NEW QUESTION: 2
An Internet firewall is designed to provide adequate protection against which of the following?
A. Unauthenticated logins from outside users.
B. Insider leaking of confidential information.
C. A Trojan horse application.
D. A computer virus.
Answer: A
Explanation:
A firewall is a combination of hardware and soft are that separates o networks and prevents passage of specific types of network traffic while maintaining a connection between the networks. Generally, an Internet firewall is designed to protect a system from unauthenticated logins from outside users, although it may provide several other features as well.
NEW QUESTION: 3
Which of the following statements is true regarding the Cisco ACI architecture?
A. Spine nodes must be fully meshed.
B. The scalability of the fabric is limited by the available number of leaf ports.
C. All nonlocal traffic traverses only a single spine node.
D. Each spine node requires at least two ports per leaf node.
Answer: C
Explanation:
Explanation/Reference:
Section: Enterprise Network Design Explanation
Explanation:
In the Cisco Application Centric Infrastructure (ACI), all nonlocal traffic traverses only a single spine node.
Cisco ACI is a data center technology that uses switches, categorized as spine and leaf nodes, to dynamically implement network application policies in response to application level requirements. Network application policies are defined on a Cisco Application Policy Infrastructure Controller (APIC) and are implemented by the spine and leaf nodes.
The spine and leaf nodes create a scalable network fabric that is optimized for east-west data transfer, which in a data center is typically traffic between an application server and its supporting data services, such as database or file servers. Each spine node requires a connection to each leaf node; however, spine nodes do not interconnect nor do leaf nodes interconnect. Despite its lack of fully meshed connections, this physical topology enables nonlocal traffic to pass from any ingress leaf interface to any egress leaf interface through a single, dynamically selected spine node. By contrast, local traffic is passed directly from an ingress interface on a leaf node to the appropriate egress interface on the same leaf node.
Because a spine node has a connection to every leaf node, the scalability of the fabric is limited by the number of ports on the spine node, not by the number of ports on the leaf node. In addition, redundant connections between a spine and leaf pair are unnecessary because the nature of the topology ensures that each leaf has multiple connections to the network fabric. Therefore, each spine node requires only a single connection to each leaf node.
Redundancy is also provided by the presence of multiple APICs, which are typically deployed as a cluster of three controllers. APICs are not directly involved in forwarding traffic and are therefore not required to connect to every spine or leaf node. Instead, the APIC cluster is connected to one or more leaf nodes in much the same manner that other endpoint groups (EPGs), such as application servers, are connected.
Reference:
CCDA 200-310 Official Cert Guide, Chapter 4, ACI, pp. 135
Cisco: Application Centric Infrastructure Overview: Implement a Robust Transport Network for Dynamic Workloads