Complexity Communication Assignment: Case

Complexity Communication Assignment: Case

Complexity Communication Assignment: Case

Complexity Communication Assignment: Case

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Week 3 discussion Complexity Communication The following is a quote from James Humes—“The art of communication is the language of leadership.” Porter-O’Grady and Malloch (2015) noted the presence of complexity communication. Critical listening, critical questioning, and critical thinking were each identified as an element of complexity communication. Select two of the three elements and discuss how the element applies to leadership within healthcare and strategies to incorporate the element as part of one’s leadership skills.

Source: http://www.collegepaperslab.com/questions/health-care/574559-nr504-week-3-discussion-latest-2017/
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In theoretical computer science, communication complexity studies the amount of communication required to solve a problem when the input to the problem is distributed among two or more parties. The study of communication complexity was first introduced by Andrew Yao in 1979, while studying the problem of computation distributed among several machines.[1] The problem is usually stated as follows: two parties (traditionally called Alice and Bob) each receive a (potentially different) {displaystyle n} -bit string {displaystyle x}  and {displaystyle y} . The goal is for Alice to compute the value of a certain function, {displaystyle f(x,y)} , that depends on both {displaystyle x}  and {displaystyle y} , with the least amount of communication between them.

While Alice and Bob can always succeed by having Bob send his whole {displaystyle n} -bit string to Alice (who then computes the function {displaystyle f} ), the idea here is to find clever ways of calculating {displaystyle f} with fewer than {displaystyle n}  bits of communication. Note that, unlike in computational complexity theory, communication complexity is not concerned with the amount of computationperformed by Alice or Bob, or the size of the memory used, as we generally assume nothing about the computational power of either Alice or Bob.

This abstract problem with two parties (called two-party communication complexity), and its general form with more than two parties, is relevant in many contexts. In VLSI circuit design, for example, one seeks to minimize energy used by decreasing the amount of electric signals passed between the different components during a distributed computation. The problem is also relevant in the study of data structures and in the optimization of computer networks. For a survey of the field, see the textbook by Kushilevitz & Nisan

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