Which topology consists of cabling segments from each computer connecting to a centralized component?

Study for the Radar, Airfield, and Weather Systems (RAWS) CDC Volume 1 Test with flashcards and multiple choice questions, complete with hints and explanations. Prepare effectively for your exam!

Multiple Choice

Which topology consists of cabling segments from each computer connecting to a centralized component?

Explanation:
In network topology, a centralized component with every computer connecting directly to it defines the star topology. This setup matches the description because each host runs its own cable to a central device such as a switch or hub, which coordinates all communication. If a single computer or its link fails, only that node is affected; if the central device fails, the entire network goes down, highlighting the importance of the central point. Compare this to other layouts: a ring forms a closed loop where each node connects to two neighbors; a bus uses a single shared backbone cable for all devices; and a mesh involves multiple direct connections between devices for redundancy. The star topology is the one that centers all connections on one centralized component.

In network topology, a centralized component with every computer connecting directly to it defines the star topology. This setup matches the description because each host runs its own cable to a central device such as a switch or hub, which coordinates all communication. If a single computer or its link fails, only that node is affected; if the central device fails, the entire network goes down, highlighting the importance of the central point.

Compare this to other layouts: a ring forms a closed loop where each node connects to two neighbors; a bus uses a single shared backbone cable for all devices; and a mesh involves multiple direct connections between devices for redundancy. The star topology is the one that centers all connections on one centralized component.

Subscribe

Get the latest from Examzify

You can unsubscribe at any time. Read our privacy policy