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The Shannon–Weaver model is one of the earliest models of communication. [2] [3] [4] It was initially published by Claude Shannon in his 1948 paper "A Mathematical Theory of Communication". [5] The model was further developed together with Warren Weaver in their co-authored 1949 book The Mathematical Theory of Communication.
Shannon–Weaver model of communication [86] The Shannon–Weaver model is another early and influential model of communication. [10] [32] [87] It is a linear transmission model that was published in 1948 and describes communication as the interaction of five basic components: a source, a transmitter, a channel, a receiver, and a destination.
Shannon's diagram of a general communications system, showing the process by which a message sent becomes the message received (possibly corrupted by noise) This work is known for introducing the concepts of channel capacity as well as the noisy channel coding theorem. Shannon's article laid out the basic elements of communication:
Schramm's model is based on the Shannon–Weaver model. According to the Shannon–Weaver model, communication is an interaction of various components. A source translates a message into a signal using a transmitter. The signal is then sent through a channel to a receiver.
Shannon–Weaver model of communication, which focuses on how a message is first translated into a signal and then back into a message. The Shannon–Weaver model is another influential linear transmission model. [31] It is based on the idea that a source creates a message, which is then translated into a signal by a transmitter.
Berlo's model was influenced by earlier models like the Shannon–Weaver model and Schramm's model. [17] [18] [19] Other influences include models developed by Theodore Newcomb, Bruce Westley, and Malcolm MacLean Jr. [20] [4] [17] The Shannon–Weaver model was published in 1948 and is one of the earliest and most influential models of ...
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Shannon's The Mathematical Theory of Communication, [58] begins with an interpretation of his own work by Warren Weaver. Although Shannon's entire work is about communication itself, Warren Weaver communicated his ideas in such a way that those not acclimated to complex theory and mathematics could comprehend the fundamental laws he put forth.