Introduction to Algorithms
Introduction to Algorithms
3rd Edition
ISBN: 9780262033848
Author: Thomas H. Cormen, Ronald L. Rivest, Charles E. Leiserson, Clifford Stein
Publisher: MIT Press
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Chapter B.5, Problem 3E
Program Plan Intro

To conclude that number of the internal nodes present in the full-binary tree is 1 less than the total amount of leaves and to determine that amount of degree-two nodes present in any of the non-empty binary tree is 1 less that the total amount of leaves.

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Simulate on a vertical time axis (with events labeled with the senders names A-D) the contention period of FOUR equally distanced Ethernet stations that all attempt to transmit at T=0 a minimally sized frame, in the style of the binary Exponential Backoff Algorithm. Assume that time is measured in slot times, and that exactly one slot time is needed to detect a collision (so that if two stations transmit at T=1 and collide, and one of them chooses a backoff time k=0, then that station will transmit again at T=2). Use as coin flip (source of randomness) an ID written in binary. use the bits in order from the least significant to the most significant. If for a given coin throw you need k bits, use the least significant ID bit extracted in the corresponding group of bits, as the least significant bit of the coin thrown. Start be writing the ID, which is 904012207 As example of the expected answer format,  with the random sequence R:   100101010101001011001010 01 01011  10010 1010 1010 010…
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What is the ALU result if the 4-bit ALU Control signal is 0100? What happens if the ALU Control signal is 0101?
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