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Colour Physics (note-1)

Color is an important aspect of textile engineering and plays a vital role in the overall aesthetic appeal of textile products. The basic concept of color is that it is the visual perception of different wavelengths of light by the human eye.

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In textile engineering, color is created through the use of dyes and pigments that are applied to fabrics during the wet processing stage.

Color physics is an important aspect of textile engineering that deals with the physical properties of light and color. Light is a form of electromagnetic radiation that travels in waves, and each color of light is characterized by a specific wavelength. The visible spectrum of light includes a range of colors from red to violet, with each color having a different wavelength.

In textile engineering, the color of a fabric is determined by the way that light interacts with the dyes and pigments that have been applied to it. The color of a textile material is influenced by a number of factors, including the type of dye or pigment used, the concentration of the dye, the fabric construction, and the type of light that the material is exposed to.

Color physics also involves the use of color measurement tools and techniques, such as spectrophotometry, to accurately measure and quantify the color properties of textile materials. These measurements can be used to ensure color consistency between batches of fabric, as well as to develop new color formulations for textile products.

Overall, a thorough understanding of the basic concepts of color and color physics is essential for textile engineers working in the field of wet processing. This knowledge can be used to develop innovative new products, ensure quality and consistency in production, and improve the overall performance and aesthetic appeal of textile materials.

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