multichannel replicator - meaning and definition. What is multichannel replicator
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What (who) is multichannel replicator - definition

Replicator dynamics; Replicator function

Multichannel analyzer         
  • The output of an MCA used in pulse-height analysis mode to analyze a [[Cs-137]] source
GAMMA RAY SPECTROSCOPY SYSTEM FOR MEASURING COUNTS AT DIFFERENT VOLTAGE LEVELS
User:Crh23/sandbox/Multichannel Analyzer; Multichannel Analyzer; Multichannel analyser
A multichannel analyzer (MCA) is an instrument used in laboratory and field applications to analyze an input signal consisting of voltage pulses. MCAs are used extensively in digitizing various spectroscopy measurements, especially those related to nuclear physics, including various types of spectroscopy (alpha-, beta-, and gamma spectroscopy).
replicator         
WIKIMEDIA DISAMBIGUATION PAGE
Replicators; Replicator (disambiguation)
Any construct that acts to produce copies of itself; this could be a living organism, an idea (see meme), a program (see quine, worm, wabbit, fork bomb, and virus), a pattern in a cellular automaton (see life), or (speculatively) a robot or nanobot. It is even claimed by some that Unix and C are the symbiotic halves of an extremely successful replicator; see Unix conspiracy. [Jargon File]
Replicator equation         
In mathematics, the replicator equation is a deterministic monotone non-linear and non-innovative game dynamic used in evolutionary game theory. The replicator equation differs from other equations used to model replication, such as the quasispecies equation, in that it allows the fitness function to incorporate the distribution of the population types rather than setting the fitness of a particular type constant.

Wikipedia

Replicator equation

In mathematics, the replicator equation is a deterministic monotone non-linear and non-innovative game dynamic used in evolutionary game theory. The replicator equation differs from other equations used to model replication, such as the quasispecies equation, in that it allows the fitness function to incorporate the distribution of the population types rather than setting the fitness of a particular type constant. This important property allows the replicator equation to capture the essence of selection. Unlike the quasispecies equation, the replicator equation does not incorporate mutation and so is not able to innovate new types or pure strategies.