Diffusion and Solubility

Bioinformatics and Sensory Function of Mammalian Fur: An Analysis of Coat Patterning, Whiskers, and Trigger Hairs

The Turing pattern, which is further explained in the paper, is an observed pattern in natural systems ranging from cheetah print to coral growth. Alan Turing proposed a mathematical model to describe pattern formation based on reaction and diffusion rates of morphogens, and this model holds true for a vast…

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The Biomolecular Design of the Eye

In “The Optical Properties of Camera Eyes” the optical properties of the camera-type eye and how light can properly converge light onto the retina to endow an organism with a clear picture of its surroundings were discussed (Gedik et al., 2020). To summarize, the camera eye of many animal species…

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Biological Design for Lungs and Gills: Information and Storage Processing

This report describes two of the most important gas exchangers for all living animals: lungs and gills. Throughout the research, cutaneous respiration will also be explained; however, the most efficient oxygen diffusion rates are obtained through lungs and gills, which are our main concern. The purpose of this biological design…

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An Analysis of Sensors and Systems of Artificial Noses

In the past couple decades, the field of artificial organs has seen immense progress, such as more comfortable prosthetic limbs and artificial livers. However, in recent years, a need for a technology able to detect the presence of molecules that the human nose cannot has emerged, leading to the creation…

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Information Signaling and Processing in the Vascular System

This report explores the notions of design and function of the vascular system as products of evolutionary processes in the framework of information storage and processing. The vascular system serves as a transportation system, delivering oxygen and sugars to other organs. The brain is the main site of information processing…

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Biological Design for Lungs and Gills: Biomolecular and Chemical Engineering

This report describes two of the most important gas exchangers for all living animals: lungs and gills. Throughout the research, cutaneous respiration will also be explained, however, the most efficient oxygen diffusing rates are obtained through lungs and gills, which are our main concern. The purpose of this biological design…

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