What Is Turing Number (TN)?
The Turing Number—a hidden code for material behavior! The behavior of materials that can alter their pattern or shape in response to changes in their surroundings can be characterised by a number known as a Turing number (TN), which is a number without dimensions. Alan Turing, who initially introduced the idea in his 1952 article titled "The Chemical Basis of Morphogenesis," is honored with naming this notion. Imagine a substance that is able to alter its pattern or shape in response to changes in the quantity of light it is exposed to or the temperature at which it is held. A TN may be utilised to make predictions regarding the behavior of this substance under a variety of scenarios. The TN is determined by comparing the rate at which the material diffuses or travels about and the rate at which the chemical reaction that generates the change in pattern or form occurs. A material with a high TN responds more to environmental changes than one with a low TN. TNs have applications in many different areas of study, including the sciences of materials, physics, chemistry, biology, and engineering. They are used in the investigation of the behavior of substances like liquid crystals, gels, and polymers, and they are also capable of being used in the prediction of the behaviour of substances that have not yet been found. The Turing number (TN) is a dimensionless number used to characterise the behavior of materials that may alter their pattern or shape in response to their surroundings. It was Alan Turing who initially proposed it, and now it is used in the process of predicting the behavior of materials such as liquid crystals, gels, and polymers. It has applications in many different areas of study, including the sciences of materials, physics, chemistry, biology, and engineering.
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