CompTIA Network+ N10-009 Network Topologies Architectures And Traffic Flows Practice Test
Objective 1.6 • 20 original questions
This CompTIA Network+ N10-009 practice test focuses on network topologies, architectures, and traffic flows. All questions are original ExamSnap scenarios aligned to the current N10-009 blueprint; they are not copied from CompTIA exam content. Use the complete N10-009 collection for broader practice across all five domains. For broader exam preparation, review the CompTIA Network+ N10-009 Exam Dumps page.
Instructions: Select the best answer for each question. Review the explanation after answering; each distractor includes a reason it is not the best choice for that scenario.
At Litware Manufacturing, a systems administrator is reviewing a network change. The requirement is to maximize redundant paths among network nodes. Which option is the best fit? The decision applies to a branch-office rollout.
Correct answer: D
Why: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. This directly satisfies the requirement: maximize redundant paths among network nodes.
Option review:
A: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: maximize redundant paths among network nodes.
B: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: maximize redundant paths among network nodes.
C: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: maximize redundant paths among network nodes.
D: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. This directly satisfies the requirement: maximize redundant paths among network nodes.
E: Directly connects two endpoints with a single logical or physical link. However, it does not most directly satisfy the requirement in this scenario: maximize redundant paths among network nodes.
Learning point: Use Mesh topology when the key requirement is to maximize redundant paths among network nodes.
A ticket at Woodgrove Bank says the team must describe a design that intentionally combines multiple topology patterns. Which technology or concept most directly addresses this requirement? The decision applies to a campus refresh.
Correct answer: E
Why: Combines characteristics of multiple topology types in one network. This directly satisfies the requirement: describe a design that intentionally combines multiple topology patterns.
Option review:
A: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: describe a design that intentionally combines multiple topology patterns.
B: Directly connects two endpoints with a single logical or physical link. However, it does not most directly satisfy the requirement in this scenario: describe a design that intentionally combines multiple topology patterns.
C: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: describe a design that intentionally combines multiple topology patterns.
D: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. However, it does not most directly satisfy the requirement in this scenario: describe a design that intentionally combines multiple topology patterns.
E: Combines characteristics of multiple topology types in one network. This directly satisfies the requirement: describe a design that intentionally combines multiple topology patterns.
Learning point: Use Hybrid topology when the key requirement is to describe a design that intentionally combines multiple topology patterns.
During a design meeting at Blue Yonder Airlines, the junior network administrator needs to connect many endpoints through a central access device. What should be selected? The decision applies to a data-center segment.
Correct answer: A
Why: Connects endpoints to a central device such as a switch. This directly satisfies the requirement: connect many endpoints through a central access device.
Option review:
A: Connects endpoints to a central device such as a switch. This directly satisfies the requirement: connect many endpoints through a central access device.
B: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: connect many endpoints through a central access device.
C: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: connect many endpoints through a central access device.
D: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: connect many endpoints through a central access device.
E: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: connect many endpoints through a central access device.
Learning point: Use Star topology when the key requirement is to connect many endpoints through a central access device.
Contoso Health is updating its network standard. Which option best meets the need to centralize branch connectivity through a primary hub site? The decision applies to a remote-site migration.
Correct answer: C
Why: Connects branch spokes through a central hub, simplifying control but creating hub dependence. This directly satisfies the requirement: centralize branch connectivity through a primary hub site.
Option review:
A: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: centralize branch connectivity through a primary hub site.
B: Directly connects two endpoints with a single logical or physical link. However, it does not most directly satisfy the requirement in this scenario: centralize branch connectivity through a primary hub site.
C: Connects branch spokes through a central hub, simplifying control but creating hub dependence. This directly satisfies the requirement: centralize branch connectivity through a primary hub site.
D: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. However, it does not most directly satisfy the requirement in this scenario: centralize branch connectivity through a primary hub site.
E: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: centralize branch connectivity through a primary hub site.
Learning point: Use Hub-and-spoke WAN when the key requirement is to centralize branch connectivity through a primary hub site.
A field technician at Litware Manufacturing is validating a proposed solution. The design must support high-bandwidth east-west traffic with consistent hop counts in a data center. Which answer is most appropriate? The decision applies to a operations lab.
Correct answer: C
Why: Uses every leaf connected to every spine, providing predictable east-west data-center paths. This directly satisfies the requirement: support high-bandwidth east-west traffic with consistent hop counts in a data center.
Option review:
A: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: support high-bandwidth east-west traffic with consistent hop counts in a data center.
B: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: support high-bandwidth east-west traffic with consistent hop counts in a data center.
C: Uses every leaf connected to every spine, providing predictable east-west data-center paths. This directly satisfies the requirement: support high-bandwidth east-west traffic with consistent hop counts in a data center.
D: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: support high-bandwidth east-west traffic with consistent hop counts in a data center.
E: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. However, it does not most directly satisfy the requirement in this scenario: support high-bandwidth east-west traffic with consistent hop counts in a data center.
Learning point: Use Spine-and-leaf when the key requirement is to support high-bandwidth east-west traffic with consistent hop counts in a data center.
For a new deployment at Woodgrove Bank, the networking team wants to connect exactly two network endpoints. Which choice most directly satisfies the goal? The decision applies to a production maintenance window.
Correct answer: E
Why: Directly connects two endpoints with a single logical or physical link. This directly satisfies the requirement: connect exactly two network endpoints.
Option review:
A: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: connect exactly two network endpoints.
B: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: connect exactly two network endpoints.
C: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: connect exactly two network endpoints.
D: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: connect exactly two network endpoints.
E: Directly connects two endpoints with a single logical or physical link. This directly satisfies the requirement: connect exactly two network endpoints.
Learning point: Use Point-to-point when the key requirement is to connect exactly two network endpoints.
At Blue Yonder Airlines, a systems administrator is reviewing a network change. The requirement is to use distinct access, distribution, and core layers. Which option is the best fit? The decision applies to a new floor deployment.
Correct answer: E
Why: Separates access, distribution, and core functions in a scalable campus architecture. This directly satisfies the requirement: use distinct access, distribution, and core layers.
Option review:
A: Uses every leaf connected to every spine, providing predictable east-west data-center paths. However, it does not most directly satisfy the requirement in this scenario: use distinct access, distribution, and core layers.
B: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: use distinct access, distribution, and core layers.
C: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: use distinct access, distribution, and core layers.
D: Connects endpoints to a central device such as a switch. However, it does not most directly satisfy the requirement in this scenario: use distinct access, distribution, and core layers.
E: Separates access, distribution, and core functions in a scalable campus architecture. This directly satisfies the requirement: use distinct access, distribution, and core layers.
Learning point: Use Three-tier hierarchical model when the key requirement is to use distinct access, distribution, and core layers.
A ticket at Contoso Health says the team must reduce hierarchical layers by combining distribution and core roles. Which technology or concept most directly addresses this requirement? The decision applies to a service-recovery review.
Correct answer: E
Why: Combines core and distribution functions, often for smaller campus designs. This directly satisfies the requirement: reduce hierarchical layers by combining distribution and core roles.
Option review:
A: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: reduce hierarchical layers by combining distribution and core roles.
B: Directly connects two endpoints with a single logical or physical link. However, it does not most directly satisfy the requirement in this scenario: reduce hierarchical layers by combining distribution and core roles.
C: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: reduce hierarchical layers by combining distribution and core roles.
D: Connects endpoints to a central device such as a switch. However, it does not most directly satisfy the requirement in this scenario: reduce hierarchical layers by combining distribution and core roles.
E: Combines core and distribution functions, often for smaller campus designs. This directly satisfies the requirement: reduce hierarchical layers by combining distribution and core roles.
Learning point: Use Collapsed core when the key requirement is to reduce hierarchical layers by combining distribution and core roles.
During a design meeting at Litware Manufacturing, the junior network administrator needs to describe traffic crossing into or out of the data-center environment. What should be selected? The decision applies to a branch-office rollout.
Correct answer: C
Why: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. This directly satisfies the requirement: describe traffic crossing into or out of the data-center environment.
Option review:
A: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: describe traffic crossing into or out of the data-center environment.
B: Uses every leaf connected to every spine, providing predictable east-west data-center paths. However, it does not most directly satisfy the requirement in this scenario: describe traffic crossing into or out of the data-center environment.
C: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. This directly satisfies the requirement: describe traffic crossing into or out of the data-center environment.
D: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: describe traffic crossing into or out of the data-center environment.
E: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: describe traffic crossing into or out of the data-center environment.
Learning point: Use North-south traffic when the key requirement is to describe traffic crossing into or out of the data-center environment.
Woodgrove Bank is updating its network standard. Which option best meets the need to describe workload-to-workload traffic inside the same data-center environment? The decision applies to a campus refresh.
Correct answer: C
Why: Traffic moves laterally between servers/workloads inside a data center or cloud. This directly satisfies the requirement: describe workload-to-workload traffic inside the same data-center environment.
Option review:
A: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: describe workload-to-workload traffic inside the same data-center environment.
B: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: describe workload-to-workload traffic inside the same data-center environment.
C: Traffic moves laterally between servers/workloads inside a data center or cloud. This directly satisfies the requirement: describe workload-to-workload traffic inside the same data-center environment.
D: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: describe workload-to-workload traffic inside the same data-center environment.
E: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: describe workload-to-workload traffic inside the same data-center environment.
Learning point: Use East-west traffic when the key requirement is to describe workload-to-workload traffic inside the same data-center environment.
During a production maintenance window, Blue Yonder Airlines is comparing several networking concepts. Which option is accurately characterized by this statement: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost.
Correct answer: E
Why: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. This directly satisfies the requirement: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost..
Option review:
A: Uses every leaf connected to every spine, providing predictable east-west data-center paths. However, it does not most directly satisfy the requirement in this scenario: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost..
B: Directly connects two endpoints with a single logical or physical link. However, it does not most directly satisfy the requirement in this scenario: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost..
C: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost..
D: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost..
E: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. This directly satisfies the requirement: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost..
Learning point: Use Mesh topology when the key requirement is to maximize redundant paths among network nodes.
During a new floor deployment, Contoso Health is comparing several networking concepts. Which option is accurately characterized by this statement: Combines characteristics of multiple topology types in one network.
Correct answer: A
Why: Combines characteristics of multiple topology types in one network. This directly satisfies the requirement: Combines characteristics of multiple topology types in one network..
Option review:
A: Combines characteristics of multiple topology types in one network. This directly satisfies the requirement: Combines characteristics of multiple topology types in one network..
B: Directly connects two endpoints with a single logical or physical link. However, it does not most directly satisfy the requirement in this scenario: Combines characteristics of multiple topology types in one network..
C: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. However, it does not most directly satisfy the requirement in this scenario: Combines characteristics of multiple topology types in one network..
D: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: Combines characteristics of multiple topology types in one network..
E: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: Combines characteristics of multiple topology types in one network..
Learning point: Use Hybrid topology when the key requirement is to describe a design that intentionally combines multiple topology patterns.
During a service-recovery review, Litware Manufacturing is comparing several networking concepts. Which option is accurately characterized by this statement: Connects endpoints to a central device such as a switch.
Correct answer: B
Why: Connects endpoints to a central device such as a switch. This directly satisfies the requirement: Connects endpoints to a central device such as a switch..
Option review:
A: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: Connects endpoints to a central device such as a switch..
B: Connects endpoints to a central device such as a switch. This directly satisfies the requirement: Connects endpoints to a central device such as a switch..
C: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: Connects endpoints to a central device such as a switch..
D: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: Connects endpoints to a central device such as a switch..
E: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: Connects endpoints to a central device such as a switch..
Learning point: Use Star topology when the key requirement is to connect many endpoints through a central access device.
During a branch-office rollout, Woodgrove Bank is comparing several networking concepts. Which option is accurately characterized by this statement: Connects branch spokes through a central hub, simplifying control but creating hub dependence.
Correct answer: A
Why: Connects branch spokes through a central hub, simplifying control but creating hub dependence. This directly satisfies the requirement: Connects branch spokes through a central hub, simplifying control but creating hub dependence..
Option review:
A: Connects branch spokes through a central hub, simplifying control but creating hub dependence. This directly satisfies the requirement: Connects branch spokes through a central hub, simplifying control but creating hub dependence..
B: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: Connects branch spokes through a central hub, simplifying control but creating hub dependence..
C: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: Connects branch spokes through a central hub, simplifying control but creating hub dependence..
D: Uses every leaf connected to every spine, providing predictable east-west data-center paths. However, it does not most directly satisfy the requirement in this scenario: Connects branch spokes through a central hub, simplifying control but creating hub dependence..
E: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: Connects branch spokes through a central hub, simplifying control but creating hub dependence..
Learning point: Use Hub-and-spoke WAN when the key requirement is to centralize branch connectivity through a primary hub site.
During a campus refresh, Blue Yonder Airlines is comparing several networking concepts. Which option is accurately characterized by this statement: Uses every leaf connected to every spine, providing predictable east-west data-center paths.
Correct answer: A
Why: Uses every leaf connected to every spine, providing predictable east-west data-center paths. This directly satisfies the requirement: Uses every leaf connected to every spine, providing predictable east-west data-center paths..
Option review:
A: Uses every leaf connected to every spine, providing predictable east-west data-center paths. This directly satisfies the requirement: Uses every leaf connected to every spine, providing predictable east-west data-center paths..
B: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: Uses every leaf connected to every spine, providing predictable east-west data-center paths..
C: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: Uses every leaf connected to every spine, providing predictable east-west data-center paths..
D: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. However, it does not most directly satisfy the requirement in this scenario: Uses every leaf connected to every spine, providing predictable east-west data-center paths..
E: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: Uses every leaf connected to every spine, providing predictable east-west data-center paths..
Learning point: Use Spine-and-leaf when the key requirement is to support high-bandwidth east-west traffic with consistent hop counts in a data center.
During a data-center segment, Contoso Health is comparing several networking concepts. Which option is accurately characterized by this statement: Directly connects two endpoints with a single logical or physical link.
Correct answer: C
Why: Directly connects two endpoints with a single logical or physical link. This directly satisfies the requirement: Directly connects two endpoints with a single logical or physical link..
Option review:
A: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: Directly connects two endpoints with a single logical or physical link..
B: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: Directly connects two endpoints with a single logical or physical link..
C: Directly connects two endpoints with a single logical or physical link. This directly satisfies the requirement: Directly connects two endpoints with a single logical or physical link..
D: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: Directly connects two endpoints with a single logical or physical link..
E: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: Directly connects two endpoints with a single logical or physical link..
Learning point: Use Point-to-point when the key requirement is to connect exactly two network endpoints.
During a remote-site migration, Litware Manufacturing is comparing several networking concepts. Which option is accurately characterized by this statement: Separates access, distribution, and core functions in a scalable campus architecture.
Correct answer: E
Why: Separates access, distribution, and core functions in a scalable campus architecture. This directly satisfies the requirement: Separates access, distribution, and core functions in a scalable campus architecture..
Option review:
A: Connects endpoints to a central device such as a switch. However, it does not most directly satisfy the requirement in this scenario: Separates access, distribution, and core functions in a scalable campus architecture..
B: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. However, it does not most directly satisfy the requirement in this scenario: Separates access, distribution, and core functions in a scalable campus architecture..
C: Uses every leaf connected to every spine, providing predictable east-west data-center paths. However, it does not most directly satisfy the requirement in this scenario: Separates access, distribution, and core functions in a scalable campus architecture..
D: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: Separates access, distribution, and core functions in a scalable campus architecture..
E: Separates access, distribution, and core functions in a scalable campus architecture. This directly satisfies the requirement: Separates access, distribution, and core functions in a scalable campus architecture..
Learning point: Use Three-tier hierarchical model when the key requirement is to use distinct access, distribution, and core layers.
During a operations lab, Woodgrove Bank is comparing several networking concepts. Which option is accurately characterized by this statement: Combines core and distribution functions, often for smaller campus designs.
Correct answer: A
Why: Combines core and distribution functions, often for smaller campus designs. This directly satisfies the requirement: Combines core and distribution functions, often for smaller campus designs..
Option review:
A: Combines core and distribution functions, often for smaller campus designs. This directly satisfies the requirement: Combines core and distribution functions, often for smaller campus designs..
B: Traffic moves laterally between servers/workloads inside a data center or cloud. However, it does not most directly satisfy the requirement in this scenario: Combines core and distribution functions, often for smaller campus designs..
C: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: Combines core and distribution functions, often for smaller campus designs..
D: Directly connects two endpoints with a single logical or physical link. However, it does not most directly satisfy the requirement in this scenario: Combines core and distribution functions, often for smaller campus designs..
E: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: Combines core and distribution functions, often for smaller campus designs..
Learning point: Use Collapsed core when the key requirement is to reduce hierarchical layers by combining distribution and core roles.
During a production maintenance window, Blue Yonder Airlines is comparing several networking concepts. Which option is accurately characterized by this statement: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows.
Correct answer: B
Why: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. This directly satisfies the requirement: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows..
Option review:
A: Provides multiple redundant interconnections among nodes, improving path resiliency at higher complexity/cost. However, it does not most directly satisfy the requirement in this scenario: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows..
B: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows. This directly satisfies the requirement: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows..
C: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows..
D: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows..
E: Uses every leaf connected to every spine, providing predictable east-west data-center paths. However, it does not most directly satisfy the requirement in this scenario: Traffic enters or leaves a data-center/cloud environment, such as user-to-server or internet-to-app flows..
Learning point: Use North-south traffic when the key requirement is to describe traffic crossing into or out of the data-center environment.
During a new floor deployment, Contoso Health is comparing several networking concepts. Which option is accurately characterized by this statement: Traffic moves laterally between servers/workloads inside a data center or cloud.
Correct answer: C
Why: Traffic moves laterally between servers/workloads inside a data center or cloud. This directly satisfies the requirement: Traffic moves laterally between servers/workloads inside a data center or cloud..
Option review:
A: Separates access, distribution, and core functions in a scalable campus architecture. However, it does not most directly satisfy the requirement in this scenario: Traffic moves laterally between servers/workloads inside a data center or cloud..
B: Combines core and distribution functions, often for smaller campus designs. However, it does not most directly satisfy the requirement in this scenario: Traffic moves laterally between servers/workloads inside a data center or cloud..
C: Traffic moves laterally between servers/workloads inside a data center or cloud. This directly satisfies the requirement: Traffic moves laterally between servers/workloads inside a data center or cloud..
D: Connects branch spokes through a central hub, simplifying control but creating hub dependence. However, it does not most directly satisfy the requirement in this scenario: Traffic moves laterally between servers/workloads inside a data center or cloud..
E: Combines characteristics of multiple topology types in one network. However, it does not most directly satisfy the requirement in this scenario: Traffic moves laterally between servers/workloads inside a data center or cloud..
Learning point: Use East-west traffic when the key requirement is to describe workload-to-workload traffic inside the same data-center environment.
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