How does STP (Spanning Tree Protocol) prevent or stop broadcast storms?a. It examines the source IP address field in each broadcast packet and temporarily blocks traffic from that address.b. It enables routers to choose one set of best paths and ensures that alternate paths are used only when the best paths are obstructed.c. It enables switches to calculate paths that avoid potential loops and artificially blocks the links that would complete a loop.d. It enables firewalls to keep access lists that name hosts known for high-volume broadcast traffic and block those hosts from transmitting to the network.e. It helps routers define the boundaries of a broadcast domain.
How does STP (Spanning Tree Protocol) prevent or stop broadcast storms?a. It examines the source IP address field in each broadcast packet and temporarily blocks traffic from that address.b. It enables routers to choose one set of best paths and ensures that alternate paths are used only when the best paths are obstructed.c. It enables switches to calculate paths that avoid potential loops and artificially blocks the links that would complete a loop.d. It enables firewalls to keep access lists that name hosts known for high-volume broadcast traffic and block those hosts from transmitting to the network.e. It helps routers define the boundaries of a broadcast domain.
Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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How does STP (Spanning Tree Protocol) prevent or stop broadcast storms?
a. It examines the source IP address field in each broadcast packet and temporarily blocks traffic from that address.
b. It enables routers to choose one set of best paths and ensures that alternate paths are used only when the best paths are obstructed.
c. It enables switches to calculate paths that avoid potential loops and artificially blocks the links that would complete a loop.
d. It enables firewalls to keep access lists that name hosts known for high-volume broadcast traffic and block those hosts from transmitting to the network.
e. It helps routers define the boundaries of a broadcast domain.
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