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Welcome to the Medium Access Methods MCQs Page

Dive deep into the fascinating world of Medium Access Methods with our comprehensive set of Multiple-Choice Questions (MCQs). This page is dedicated to exploring the fundamental concepts and intricacies of Medium Access Methods, a crucial aspect of Networking. In this section, you will encounter a diverse range of MCQs that cover various aspects of Medium Access Methods, from the basic principles to advanced topics. Each question is thoughtfully crafted to challenge your knowledge and deepen your understanding of this critical subcategory within Networking.

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Check out the MCQs below to embark on an enriching journey through Medium Access Methods. Test your knowledge, expand your horizons, and solidify your grasp on this vital area of Networking.

Note: Each MCQ comes with multiple answer choices. Select the most appropriate option and test your understanding of Medium Access Methods. You can click on an option to test your knowledge before viewing the solution for a MCQ. Happy learning!

Medium Access Methods MCQs | Page 13 of 14

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Q121.
When a station needs to make a reservation before sending data then it is called the
Discuss
Answer: (d).reservation method
Q122.
In Frequency Division Multiple Access, the data link layer in each station tells its physical layer to make
Discuss
Answer: (b).Bandpass signal
Q123.
Fiber Distributed Data Interface (FDDI) and Copper Distributed Data Interface (CDDI) uses
Discuss
Answer: (b).dual ring topology
Q124.
A pure ALOHA network transmits 200-bit frames on a shared channel of 200 kbps. What is the requirement to make this frame collision-free?
Discuss
Answer: (a).2 msec
Q125.
Find the distance from source A to destination D using Dijkstra algorithm.
Discuss
Answer: (a).10
Q126.
Find the distance from source A to destination D using Dijkstra algorithm.
Discuss
Answer: (a).A-B-C-J-D-K
Q127.
After performing bit stuffing on the following stream : 01101111111111111110010, the output is-
Discuss
Answer: (a).01101111101111101111100010
Q128.
A pure ALOHA network transmits 200-bit frames on a shared channel of 200 kbps. What is the throughput if the system (all stations together) produces 1000 frames per second?
Discuss
Answer: (c).135 frames
Q129.
A pure ALOHA network transmits 200-bit frames on a shared channel of 200 kbps. What is the throughput if the system (all stations together) produces 500 frames per second?
Discuss
Answer: (b).92 frames
Q130.
A pure ALOHA network transmits 200-bit frames on a shared channel of 200 kbps. What is the throughput if the system (all stations together) produces 250 frames per second?
Discuss
Answer: (a).38 frames

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